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论文发表清样单

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论文发表清样单

清样是一个出版术语,出版过程中编辑打印出来的杂志或报纸草稿,以便校对和排版,那就叫清样

这个问题很简单,就是文章印刷之前,编辑部已经将您文章排好版了,不会再有大的变化了的版本,让作者在检查确认一下。这个版本的稿件就叫清样稿。

清样稿,是指从最后校改的印刷版上打下来的校样稿,有时也指最后一次校定、准备付印的校样。

这种稿件也叫做付印样或者付型样,是用于在出版发行、印刷行业的名词,主要目的是为了确保印刷出版质量,在文章印刷之前,这种清样稿是编辑部已经将文章排好版了,不会再有大的变化了的版本,最后再让作者检查确认一下即可。

扩展资料

清样稿需要注意的事项:

1、体例安排要统一。目录、页码、天头、地脚等都要核对无误。

2、围绕中心思想。有时为了增强稿件趣味性的小知识、小故事要符合文章中心思想,并保证没有错误。

3、图表安排要合理。图表要有标题,要清晰。

4、内容、层次分明。文章的内容要有层次,紧紧围绕中心思想,不能让人觉得混乱,更要尽可能避免出现错别字。

清样的意思是从最后校改的印刷版上打下来的校样,有时也指最后一次校定、准备付印的校样。

指从最后校改的印刷版上打下来的校样,有时也指最后一次校定的校样。也叫付印样、付型样。

刘半农《读海上花列传》:“当其清样打成时,恰巧我经过上海,馆中就把校阅清样这一件事嘱咐了我。”

巴金《发的故事序》:“在这时候印刷局送来了《发的故事》的清样。”

论文清样重点包括以下内容:

1、论文的中、英文标题、摘要和关键词。

2、作者姓名、单位、地址和邮编及脚注中的内容。

3、正文中的图题、标题及图表中的文字和数字。

4、正文中和公式中出现的物理量符号及其单位的大小写、上下角标、矢量。

5、参考文献在正文中引出的位置及文后标注的项目(刊名、年、卷、期、页码等)。

发表论文清单

2000年以来发表的论文清单1. Zhou, B.; Li, X.; Li, Y.; Xu, Y.; Zhang, Z.; Zhou, M; Zhang, X.; Liu, Z.; Zhou, J.; Cao, C.; Yu, B.;* Wang, R.,*Discovery and Development of 2H-thiazolo[3,2-a]pyrimidine Derivatives as General Inhibitors of Bcl-2 Family Proteins,ChemMedChem, 2011, 6, 904–921.2. Li, Y.; Zhao, Y.; Wang, R.* Automatic Tailoring and Transplanting: A Practical Method that Makes Virtual Screening More Useful, J. Chem. Inf. Model., 2011, 51, 1474–1491.3. Zhang, Y.; Lin, F.; Deng, X.-D., Wang, R.-X.*, Ye, D.-Y.*, Molecular Modeling of the Three-Dimensional Structure of Human Sphingomyelin Synthase, Chinese J. Chem. 2011, in press.4. Li, Y.; Liu, Z.; Wang, R.*, “Test MM-PB/SA on True Conformational Ensembles of Protein-Ligand Complexes”, J. Chem. Inf. Model.2010, 50, 1682-1692.5. Lin, F.; Wang, R.*, “Systematic Derivation of AMBER Force Field Parameters Applicable to Zinc”, J. Chem. Theory Comput. 2010, 6, 1852-1870.6. Cheng, T.; Liu, Z.; Wang, R.*, “A Knowledge-Based Strategy for Improving the Accuracy of Scoring Functions in Binding Affinity Prediction”, BMC Bioinformatics, 2010, 11, 193-208.7. Li, X.; Li, Y.; Cheng, T.; Liu, Z.; Wang, R.*, “Evaluation of the Performance of Four Molecular Docking Programs on a Diverse Set of Protein-Ligand Complexes”, J. Comp. Chem. 2010, 31, 2109-2125.8. Shi, H.; Zhou, B.; Li, W.; Shi, Z.; Yu, B.*; Wang, R.*, Synthesis and Anti-tumor Activities of Methyl 2-O-Aryl-6-O-Aryl'-D-Glucopyranosides, Bioorg. Med. Chem. Lett., 2010, 20, 2855-2858.9. Li, X.; Liu, Z.; Li, Y.; Li, J.; Li, J.; Wang, R.*, “A Statistical Survey on the Binding Constants of Covalently Bound Protein-Ligand Complexes”, Mol. Informatics, 2010, 29,87-96.10. Zheng, F.; Lin, F.; Wang, R.; Qing, F.-L. “Synthesis and conformational analysis of D-2-deoxy-2,2-difluoro-4-dihydro-4-thionucleosides”, Org. Biomol. Chem., 2010, 8, 163-170.11. Lin, F.; Wang, R.* “Hemolytic Mechanism of Dioscin Proposed by Molecular Dynamics Simulations”, J. Mol. Model.2010, 16, 107-118.12. Cheng, T.; Li, X.; Li, Y.; Liu, Z.; Wang, R.* “Comparative Assessment of Scoring Functions on a Diverse Test Set”, J. Chem. Inf. Model. 2009, 49, 1079-1093.13. Zhang, X.; Li, X.; Wang, R.* “Interpretation of the Binding Affinities of PTP1B Inhibitors with the MM-GB/SA method and the X-Score Scoring Function”, J. Chem. Inf. Model. 2009, 49, 1033-1048. (cover story)14. Li, Y.; Zhou, B.; Wang, R.* “Rational Design of Tamiflu Derivatives Targeting at the Open Conformation of Neuraminidase Subtype 1”, J. Mol. Graph. Model. 2009, 28, 203-219.15. Li, X.; Wang, R.* “Automatic Identification of Antibodies in the Protein Data Bank”, Chinese Journal of Chemistry, 2009, 27, 23-28.16. Wang, K.; Wu, Y.-S.; Wang, G.-T.; Wang, R.-X.; Jiang, X.-K.; Fu, H.-B.; Li, Z.-T., Hydrogen bonding-mediated foldamer-bridged zinc porphyrin-C60 dyads: ideal face-to-face orientation and tunable donor–acceptor interaction,Tetrahedron, 2009, 65, 7718–7729.17. Zhu, Y.-Y.; Wang, G.-T.; Wang, R.-X.; Li, Z.-T. Intramolecular Six-Membered and Three-Center C-H-O Hydrogen Bonding in 1,4-Diphenyl-1,2,3-Triazoles, Cryst. Growth Des., 2009, 9, 4778–4783.18. Liu, Z. G.; Wang, G. T.; Li, Z. T.; Wang, R.* “Geometrical Preferences of the Hydrogen Bonds on Protein-Ligand Binding Interface Derived from Statistical Surveys and Quantum Mechanics Calculations”, J. Chem. Theory Comput. 2008, 4,1959–1973.19. Lin, F.; Wang, R.* “Molecular modeling of the three-dimensional structure of GLP-1R and its interactions with several agonists”, J. Mol. Model. 2008, 15, 53-65.20. Cai, W.; Wang, G. T.; Du, P.; Wang, R. X.; Jiang, X. K.; Li, Z.T.* “Foldamer Organogels: A Circular Dichroism Study of Glucose-Mediated Dynamic Helicity Induction and Amplification”, J. Am. Chem. Soc. 2008, 130, 13450–13459.21. Yeang, C.; Varshney, S.; Wang, R.; Zhang Y.; Ye D.Y.; Jiang, X. C.* “The domain responsible for sphingomyelin synthase (SMS) activity”, Biochimica et Biophysica Acta-Molecular and Cell Biology of Lipids, 2008, 1781, 610-617.22. Cheng, T.; Zhao, Y.; Li, X.; Lin, F.; Xu, Y.; Zhang, X.; Li, Y.; Wang, R.*; Lai, L. “Computation of Octanol-Water Partition Coefficients by Guiding an Additive Model with Knowledge”, J. Chem. Inf. Model. 2007, 47, 2140-2148.23. Zhao, Y.; Cheng, T.; Wang, R.* “Automatic Perception of Organic Molecules Based on Essential Structural Information”, J. Chem. Inf. Model. 2007, 47, 1379-1385.24. Wang, R.*; Lin, F.; Xu, Y.; Cheng, T. “I-SOLV: A new surface-based empirical model for computing solvation free energies”, J. Mol. Graph. Model. 2007, 26, 368-377.25. Feng, D.-J.; Wang, G..-T.; Wu, J.; Wang, R.-X.; Li, Z.-T.* “Hydrogen bonding-driven elastic bis(zinc)porphyrin receptors for neutral and cationic electron-deficient guests with a sandwich-styled complexing pattern”, Tetrahedron Lett.2007, 48, 6181-6185.26. Li, C.; Wang, G.; Yi, H.; Jiang, X.; Li, Z.*;Wang, R.* “Diastereomeric Recognition of Chiral Foldamer Receptors for Chiral Glucoses”, Org. Lett. 2007, 9, 1797-1800.27. Ma, D.*; Yu, S.; Li, B.; Chen, L.; Chen, R.; Yu, K.; Zhang, L.; Chen, Z.; Zhong, D.; Gong, Z.; Wang, R.; Jiang, H.; Pei, G. “Synthesis and Biological Evaluation of 1,3,3,4-Tetrasubstituted Pyrrolidine CCR5 Receptor Antagonists. Discovery of a Potent and Orally Bioavailable Anti-HIV Agent”, ChemMedChem, 2007, 2, 187-193.28. Tang, G.; Ding, K.; Nikolovska-Coleska, Z.; Yang, C.-Y.; Qiu, S.; Shangary, S.; Wang, R.; Guo, J.; Gao, W.; Meagher, J.; Stuckey, J.; Krajewski, K.; Jiang, S.; Roller, P. P.; Wang, S.* “Structure-Based Design of Flavonoid Compounds As a New Class of Small-Molecule Inhibitors of the Anti-apoptotic Bcl-2 Proteins”, J. Med. Chem. 2007, 50, 3163-3166.29. Tang, G.-Z.; Yang, C.-Y.; Nikolovska-Coleska, Z.; Guo, J.; Qiu, S.; Wang, R. X.; Gao, W.; Wang, G.-P.; Stuckey, J.; Krajewski, K.; Jiang, S.; Roller, P. P.; Wang, S. M.* “Pyrogallol-based molecules as potent inhibitors of the antiapoptotic Bcl-2 proteins”, J. Med. Chem. 2007, 50, 1723-1726.30. Lu, Y.; Wang, R.; Yang, C.-Y.; Wang, S.* “Analysis of ligand-bound water molecules in high-resolution crystal structures of protein-ligand complexes”. J. Chem. Inf. Model. 2007, 47, 668-675.31. Zhang M.C.; Ling, Y.; Yang, C.-Y.; Liu, H. P.; Wang, R. X.; Wu, X. H.; Ding, K.; Zhu, F.; Griffith, B. N.; Mohammad, R. M.; Wang, S. M.*; Yang, D. J. “A novel Bcl-2 small molecule inhibitor 4-(3-methoxy-phenylsulfannyl)-7-nitro-benzofurazan-3-oxide (MNB)-induced apoptosis in leukemia cells”. Annals. Hematology, 2007, 86, 471-481.32. Xu, Y.; Wang, R.* “A Computational Analysis of the Binding Affinities of FKBP12 Inhibitors Using the MM-PB/SA Method”, Proteins, 2006, 64, 1058-1068.33. Yu, S.; Pu, X.; Cheng, T.; Wang, R.; Ma, D.* “Total Synthesis of Clavepictines A and B and Pictamine”,Org. Lett.2006, 8, 3179-3182.34. Ma, D.*; Jiang, Y.; Chen, F.; Gong, L.-k.; Ding, K.; Xu, Y.; Wang, R.; Ge, A.; Ren, J.; Li, J.; Li, J.; Ye, Q. “Selective Inhibition of Matrix Metalloproteinase Isozymes and in Vivo Protection against Emphysema by Substituted -Keto Carboxylic Acids”, J. Med. Chem. 2006, 49, 456-458.35. Wang, G.; Nikolovska-Coleska, Z.; Yang, C.-Y.; Wang, R.; Tang, G.; Guo, J.; Shangary, S.; Qiu, S.; Gao, W.; Yang, D.; Meagher, J.; Stuckey, J.; Krajewski, K.; Jiang, S.; Roller, P. P.; Abaan, H. O.; Tomita, Y.; Wang, S.* “Structure-Based Design of Potent Small-Molecule Inhibitors of Anti-Apoptotic Bcl-2 Proteins”, J. Med. Chem., 2006, 49, 6139-6142.36. Yang, C.-Y.; Wang, R.; Wang, S.* “M-Score: A Knowledge-Based Potential Scoring Function Accounting for Protein Atom Mobility”, J. Med. Chem. 2006, 49, 5903-5911.37. Wang, R.; Fang, X.; Lu, Y.; Yang, C.-Y.; Wang, S.* “The PDBbind Database: Methodologies and Updates”, J. Med. Chem. 2005, 48, 4111-4119.38. Yang, C.-Y.; Wang, R.; Wang, S.* “A Systematic Analysis of the Effect of Small-Molecule Binding on Protein Flexibility of the Ligand-Binding Sites”, J. Med. Chem.2005, 48, 5648-5650.39. Song, H.; Wang, R.; Wang, S; Lin, J.* “A low-molecular-weight compound discovered through virtual database screening inhibits Stat3 function in breast cancer cells”, Proc. Natl. Acad. Sci. 2005, 102, 4700-4705.40. Wang R.; Lu Y.; Fang X.; Wang S.* “An Extensive Test of 14 Scoring Functions Using the PDBbind Refined Set of 800 Protein-Ligand Complexes”, J. Chem. Inf. Comput. Sci. 2004, 44, 2114-2125.41. Real P. J.; Cao, Y.; Wang R.; Nikolovska-Coleska Z.; Sanz-Ortiz J.; Wang S.; Fernandez-Luna J. L.* “Breast cancer cells can evade apoptosis-mediated selective killing by a novel small molecule inhibitor of Bcl-2”, Cancer Research, 2004,64, 7947-7953.42. Wang, R.; Fang, X.; Lu, Y.; Wang, S.* “The PDBbind Database: Collection of Binding Affinities for Protein-Ligand Complexes with Known Three-Dimensional Structures”, J. Med. Chem. 2004, 47, 2977-2980.43. Nikolovska-Coleska, Z.; Wang, R.; Fang X, Wang, S.* “Development and optimization of a binding assay for the XIAP BIR3 domain using fluorescence polarization”, Analytical Biochemistry 2004, 332, 261-273.44. Nikolovska-Coleska, Z.; Xu, L.; Hu, Z.; Tomita, Y.; Li, P.; Roller, P. P.; Wang, R.; Fang, X.; Guo, R.; Zhang, M.; Lippman, M. E.; Yang, D.; Wang, S.* “Discovery of Embelin as a Cell-Permeable, Small-Molecular Weight Inhibitor of XIAP through Structure-Based Computational Screening of a Traditional Herbal Medicine Three-Dimensional Structure Database”, J. Med. Chem.2004,47,2430-2440.45. Gao, Y.; Wang, R.; Lai, L.* “Structure-based method for analyzing protein-protein interfaces”, J. Mol. Model.2004, 10, 44-54.46. Wang, R.; Lu, Y.; Wang, S.* “Comparative Evaluation of Eleven Scoring Functions for Molecular Docking”, J. Med. Chem. 2003, 46, 2287-2303.47. Leach, A. G.; Wang, R.; Wohlhieter, G. E.; Khan, S. I.; Jung, M. E.; Houk, K. N.* “Theoretical Elucidation of Kinetic and Thermodynamic Control of Radical Addition Regioselectivity”, J. Am. Chem. Soc. 2003, 125, 4271-4278.48. Wang, R.; Lai, L.; Wang, S.* “Further development and validation of empirical scoring functions for structure-based binding affinity prediction”, J. Comput.-Aided Mol. Des. 2002, 16, 11-26.49. Gao, Y.; Wang, R.; Lai, L.* “New method to analyze protein-protein interaction interface”, Acta Phys.-Chim. Sinica 2002, 18, 676-679.50. Wang, R.; Wang, S.* “How does consensus scoring work for virtual library screening? An idealized experiment”, J. Chem. Inf. Comput. Sci. 2001, 41, 1422-1426.51. Rong, S.; Hu, Y.; Enyedy, I.; Powis, G.; Meuillet, E. J.; Wu, X.; Wang, R.; Wang, S.*; Kozikowski, A. P. “Molecular Modeling Studies of the Akt PH Domain and Its Interaction with Phosphoinositides”, J. Med. Chem. 2001, 44, 898-908.52. Chen, J.; Wang, R.; Taussig, M.; Houk, K. N.* “Quantitative Calculation of Antibody-Antigen Binding: Steroid-DB3 Binding Energies by the Linear Interaction Energy Method”, J. Org. Chem. 2001, 66, 3021-3026.53. Liu, Y.; Feng, Y.; Wang, R.; Gao, Y.; Lai, L.* “Quinoline-4-acetamides as sPLAB2B Inhibitors”, Bioorgan. & Med. Chem. Lett. 2001, 11, 1639-1641.54. Liu, Y.; Feng, Y.; Gao, Y.; Wang, R.; Lai, L.* “Structure-based design and synthesis of novel type quinoline as secretory PLA(2) inhibitors”, Acta Phys.-Chim. Sinica 2001, 59, 1751-1755.55. Chen, J.; Deng, Q.; Wang, R.; Houk, K. N.*; Hilvert, D.* Shape Complementarity, Binding Site Dynamics, and Transition State Stabilization: A Theoretical Study of Diels-Alder Catalysis by Antibody 1E9, ChemBioChem 2000, 1, 255-261.56. Wang, R.; Gao, Y.; Lai, L.* LigBuilder: A Multiple-Purposed Program for Structure-Based Drug Design, J. Mol. Model. 2000, 6, 498-516.57. Wang, R.; Gao, Y.; Lai, L.* Calculating Partition Coefficients by Atom-Additive Method, Perspective in Drug Discovery & Design. 2000, 19, 47-66.

近五年作为通讯作者,共发表了研究论文200余篇,其中被SCI收录180余篇,主要发表在国际著名的Adv. Funct. Mater.、Chem: Eur.J.、Chem. Commun.、J. Mater. Chem.、 J. Phys. Chem. B、J. Phys. Chem. C、J. Comput. Chem.、Inorg. Chem.、Appl. Catal. B、Nanotechnology、J. Phys.: Condensed Matter等学术期刊上,影响因子在3.0以上的论文有50余篇,其中影响因子在5.0以上8篇。成果被SCI收录期刊正面引用1400余次。出版专著两部,美国科学出版社邀请为纳米科学技术大百科全书撰写了完整的一章。申请发明专利14项。已发表和已录用的主要论文清单如下(以下均为SCI期刊收录论文,*代表通讯联系人)·Pan Qing-Jiang,Guo Yuan-Ru,Li Li,Fu Hong-Gang*,and Zhang Hong-Xing “Structures,Spectroscopic Properties and Redox Potentials of Quaterpyridyl Ru(Ⅱ) Photosensitizer and its Derivatives for Solar Energy Cell: A Density Functional Study” Physical Chemistry Chemical Physics 2011,DOI:10.1039/C1CP00030F.·Gao Xiao-Qin,Pan Qing-Jiang,Li Li,Guo Yuan-Ru,Zhang Hong-Xing,Fu Hong-Gang* “Structures and Spectroscopic Properties of Ruthenium Phenanthroline Solar-Cell Sensitizers: A Computational Study” Chemical Physics Letters,2011,506,146-151.·Zhou W,Sun FF,Pan K,Tian GH,Fu HG*. Well-ordered large-pore mesoporous anatase TiO2 with remarkably high thermal stability and improved crystallinity: Preparation,characterization and photocatalytic performance. Advanced Functional Materials,2011,21,1922-1930..·Jiang Baojiang,Tian CG,Fu Honggang*,et al. In-Situ Growth of TiO2 in Interlayers of Expanded Graphite for the Fabrication of TiO2-Graphene with Enhanced Photocatalytic Activity. Chemistry-A European Journal,2011,Accepted,chem.201100250.· Li Sun,Chungui Tian,Lei Wang,Jinlong Zou,Guang Mu,Honggang Fu*,Magnetically Separable Porous Graphitic Carbon with Large Surface Area as Excellent Adsorbents for Metal Ions and Dye. Journal of Materials Chemistry,2011,2011,21,7232-7239.· Zhao H,Yang J,Wang L,Tian CG,Jiang BJ,Fu HG*. Fabrication of palladium nanoparticles/graphene nanosheets hybrid via sacrifice of copper template and its application in catalytic oxidation of formic acid. Chemical Communications,2011,47,2014-2016.· Yang J,Tian CG,Wang L,Fu HG*. An effective strategy to small-sized and high-dispersed palladium nano particles supported on graphene with excellent performance for formic acid oxidation. Journal of Materials Chemistry,2011,21,3384-3390.· Tian GH,Chen YJ,Zhou W,Ren ZY,Tian CG,Fu HG*. Facile solvothermal synthesis of hierarchical flower-like Bi2MoO6 hollow spheres as high performance visible-light driven photocatalysts. Journal of Materials Chemistry,2011,21,887 – 892.· Hu ZF,Shen PK*,Fu HG*,et al. Oxygen Reduction Electrocatalysis Enhanced by Nanosized Cubic Vanadium Carbide. Electrochemistry Communications,2011,Accepted,ELECOM 3881.· Tian Guohui,Chen Yajie,Zhou Wei,Pan Kai,Huang Xu-ri and Fu Honggang *,3D hierarchical flower-like TiO2 nanostructure: morphology control and its photocatalytic property. CrstEngComm,2011,13,2994.· Dong Youzhen,Pan Kai,Zhou Wei,Pan Qingjiang,Xie Tengfeng,Wang Dejun,Fu Honggang*,Dye-sensitized solar cells based on TiO2-B nanobelt/TiO2 nanoparticle sandwich-type photoelectrodes with controllable nanobelt length. Dalton Transactions,2011,40,3808–3814.· Cai ZC,Tian CG,Wang L,Zhou W,Wang BL,Fu HG*. One-pot synthesis of silver particle aggregation as highly active SERS substrate. Journal of Raman Spectroscopy,2011,1,5-11.· Tian CG,Li W,Fu HG*,et al. Glucose-mediated solution-solid route for easy synthesis of Ag/ZnO particles with superior photocatalytic activity and photostability,Journal of Alloys and Compounds,2011,509,6935-6941.· Tian CG,Li W,Fu HG*,et al. Controllable Fabrication of Various ZnO Micro/nanostructures from a Wire-like Zn-EG-AC Precursor via a Facile Solution-based Route,Materials Research Bulletin,2011,MRB5116.· Zhao H,Fu HG,Tian CG,et al.Facile shape-controlled synthesis of palladium nanostructures on copper for promising Surface-enhanced Raman scattering,MATERIALS LETTERS,2010,64,2255-2257· Zhao H,Fu HG,Tian CG,et al. Fabrication of silver nanoparticles/single-walled carbon nanotubes composite for surface-enhanced Raman scattering,JOURNAL OF COLLOID AND INTERFACE SCIENCE,2010,351,343-347.· Jiang BJ,Tian CG,Fu HG*,et al. Facile Fabrication of High Quality Graphene from Expandable Graphite: Simultaneous Exfoliation and Reduction. Chemical Communication. 2010,46,4920 - 4922.· Feng SS,Ren ZY,Fu HG*,et al. Synthesis and application of hollow magnetic graphitic carbon microspheres with/without TiO2 nanoparticle layer on the surface. Chemical Communication. 2010,46,6276-6278.· Liu Y,Ren ZY,Fu HG*,et al. Synthesis and applications of graphite carbon sphere with uniformly distributed magnetic Fe3O4 nanoparticles (MGCSs) and MGCS@Ag,MGCS@TiO2. Journal of Material Chemistry 2010,20,4802- 4808.· Wang L,Tian CG,Fu HG*,et al. Mass production of graphene via an in situ self-generating template route and its promoted activity as electrocatalytic support for methanol electroxidization. Journal of Physical Chemistry C 2010,114 (19),8727–8733.· Qu Y,Zhou W,Fu HG*,et al. Hierarchical anatase TiO2 porous nanopillars with high crystallinity and controlled length: An effective candidate for dye-sensitized solar-cells. Physical Chemistry Chemical Physics 2010,12,9205 - 9212.· Wang BL,Tian CG,Fu HG,et al. Chitosan: a green carbon source for the synthesis of graphitic nanocarbon,tungsten carbide and graphitic nanocarbon/tungsten carbide composites. Nanotechnology 21 (2010) 025606 (9pp).· Li YJ,LV RJ,Fu HG*,et al. Fabrication and evaluation of chiral monolithic column modified by β-cyclodextrin derivatives. Talanta 80 (2010) 1378–1382· Zhou W,Pan K,Fu HG*,et al. Photodegradation of organic contamination in wastewaters by bondingTiO2/single-walled carbon nanotube composites with enhanced photocatalytic activity. Chemosphere 81 (2010) 555–561.· Guohui Tian,Chen Yajie,Pan Kai,Fu Honggang*,Efficient visible light-induced degradation of phenol on N-doped anatase TiO2 with large surface area and high crystallinity. Applied Surface Science 2010,256,3740-3745.· Tian CG,Li W,Fu HG*,et al. One-pot Synthesis of the Ag Nanoparticles modified ZnO Microspheres in Ethylene Glycol Medium and Their Enhanced Photocatalytic Performance. Journal of Solid State Chemistry,2010,183,2720-2725.· Zhou W,Pan K,Fu HG*,et al. The sandwich structure electrodes based on wire-likeTiO2–β-cyclodextrin–SWCNT composite for dye-sensitized solar cells. Journal of Photochemistry and Photobiology A: Chemistry 2009,207,306–310.· Tian XQ,Wan LJ,Fu HG*,et al. Facile synthesis of mesoporous ZnAl2O4 thin films through the evaporation-induced self-assembly method. Journal of Alloys and Compounds 2009,488,320–324.· Wang RH,Tian CG,Fu HG*,et al. In situ simultaneous synthesis of WC/graphitic carbon nanocomposite as a highly efficient catalyst support for DMFCw. Chemical Communication 2009,3104-3106.· Pan QJ,Fu HG*,Zhang HX*,et al. Theoretical Studies on Metal−Metal Interaction,Excited States,and Spectroscopic Properties of Binuclear Au−Au,Au−Rh,and Rh−Rh Complexes with Diphosphine Ligands: Buildup of Complexity from Monomers to Dimers. Inorganic Chemistry,2009,48,2844–2854.· Zhou W,Pan K,Fu HG*,et al. Solar-induced Self-assembly of TiO2-β-cyclodextrin-MWCNT Composite Wires. Physical Chemistry Chemical Physics 2009,11,1713-1718.· Kang CH,Jing LQ*,Fu HG*,et al. Mesoporous SiO2-Modified Nanocrystalline TiO2 with High Anatase Thermal Stability and Large Surface Area as Efficient Photocatalyst. Journal of Physical Chemistry C 2009,113,1006–1013.· Wang BL,Tian CG,Fu HG*,et al. A simple and large-scale strategy for the preparation of Ag nanoparticles supported on resin-derived carbon and their antibacterial properties. Nanotechnology 2009,20,025603(7pp)· Tian GH,Fu HG*,Jing LQ,et al. Synthesis and photocatalytic activity of stable nanocrystalline TiO2 with high crystallinity and large surface area. Journal of Hazardous Materials 2009,161,1122-1130.· Zhang GX,Yu HT*,Fu HG,et al. First-principles calculations of the stability and electronic properties of the PbTiO3 (110) polar surface. Journal of Computational Chemistry 2009,30,1785-1798.· Tian GH,Pan K,Fu HG*,et al. Enhanced photocatalytic activity of S-doped TiO2-ZrO2 nanoparticles under visible-light irradiation. Journal of Hazardous Materials 2009,166,939-944.· Pan K,Dong YZ,Fu HG*,et al. TiO2-B narrow nanobelt/TiO2 nanoparticle composite photoelectrode for dye-sensitized solar cells. Electrochimica Acta 2009,54,7350-7356.· Kan K,Fu HG,Shi KY*,et al. Amidation of single-walled carbon nanotubes by a hydrothermal process for the electrooxidation of nitric oxide. Nanotechnology 2009,20,185502 (7pp).· Wang L,Tian CG,Fu HG*,et al. Controllable Synthesis of Graphitic Carbon Nanostructures from Ion-Exchange Resin-Iron Complex via Solid-State Pyrolysis Process. Chemical Communication 2008,5411-5413.· Zhou W,Fu HG*,Pan K,et al. Mesoporous TiO2/α-Fe2O3: Bifunctional Composites for Effective Elimination of Arsenite Contamination through Simultaneous Photocatalytic Oxidation and Adsorption. Journal of Physical Chemistry C 2008,112,19584-19589.· Liu KS,Fu HG*,Xie Y,et al. Assembly of β-Cyclodextrins Acting as Molecular Bricks onto the Multiwall Carbon Nanotubes.Journal of Physical Chemistry C 2008,112,951-957.· Tian GH,Fu HG*,Jing LQ,et al. Preparation and Characterization of Stable Biphase TiO2 Photocatalyst with High Crystallinity,Large Surface Area and Enhanced Photoactivity. Journal of Physical Chemistry C 2008,112,3083-3089.· Zhou W,Liu KS,Fu HG*,et al. Multi-modal mesoporous TiO2–ZrO2 composites with high photocatalytic activity and hydrophilicity. Nanotechnology 2008,19,035610(7pp).· Pan QJ,Zhou X,Fu HG*,et al,“Isovalent Gold(I),-(Ⅱ),and -(Ⅲ) and Mixed-Valent Gold(I)/Gold(Ⅲ) Phosphorus Ylide Complexes. Combined ab Initio and Density Functional Study of Electronic Structures and Spectroscopic Properties” Organometallics 2008,27,2474–2482.· Wan LJ,Fu HG*,Shi KY,et al. Facile synthesis of ordered nanocrystalline alumina thin films with tunable mesopore structures. Microporous and Mesoporous Materials 2008,115(3),301-307.· Pan QJ,Zhou X,Fu HG*,et al. A theoretical probe on the ground- and excited-state properties of heterobinuclear Au–Pt complex with phosphine ligands. Comparison with analogous homobinuclear Au–Au and Pt–Pt complexes. Chemical Physics Letters 2008,453,7-12.· Jing LQ*,Li SD,Fu HG*,et al. Investigation on the electron transfer between anatase and rutile in nano-sized TiO2 by means of surface photovoltage technique and its effects on the photocatalytic activity. Solar Energy Materials & Solar Cells 2008,92,1030– 1036.· Wan LJ,Fu HG*,Shi KY,et al. Facile synthesis of iron oxide with wormlike morphology and their application in water treatment. Journal of Solid State Chemistry 2008,181(4),735-740.· Chi YJ,Fu HG*,Qi LH,et al. Preparation and photoelectric performance of ITO/TiO2/CdS composite thin films. Journal of Photochemistry and Photobiology A: Chemistry 2008,195(2-3),357-363.· Xie Y,Yu HT,Fu HG*,et al. Lattice dynamics investigation on different transition behaviors of cubic BaTiO3 and SrTiO3 by first-principles calculatoins. J. Phys.: Condens. Matter,2008,20,215215 (8pp)· Wan LJ,Fu HG*,Shi KY,et al. Simple synthesis of mesoporous alumina thin films.Material Letters 2008,62(10-11),1525-1527.· Song S,Jing LQ*,Fu HG*,et al. Superhydrophilic anatase TiO2 film with the micro- and nanometer-scale hierarchical surface structure. Materials Letters 2008,62,3503–3505.· Zhu YJ,Yuan FL*,Fu HG,et al. Direct NO decomposition over La2-xBaxNiO4 catalysts containing BaCO3 phase. Appl. Catal B-Environ 2008,82,255-263.· Li MX,Zhang HX*,Fu HG,et al. Theoretical Studies of Electronic Structuresand Spectroscopic Properties of Ru Complexes. Inorg. Chem 2008 47(7),2312-2324.· Xie Y,Yu HT,Fu HG*,A First-Principles Investigation of Stability and Structural Properties of the BaTiO3 (110) Polar Surface. Journal of Physical Chemistry C,2007,111,6343-6349.· Kan W,Yu HT,Fu HG*,et al. Theoretical investigation on the protonation reactions and products of the stable [N,C,C,S] isomers,Journal of Computational Chemistry,2007,28,2472-2482.· Zhao YL,Yu HT*,Fu HG,et al. Combined DFT,QCISD(T),and G2 mechanism investigation for the reactions of carbon monophosphide CP with unsaturated hydrocarbons allene CH2CCH2 and methylacetylene CH3CCH,Journal of Computational Chemistry,2007,28,1221-1233.· Pan QJ,Zhang HX*,Fu HG,et al. Electronic Structures and Spectroscopic Properties of Mono- and Binuclear d8 Complexes: a Theoretical Exploration on Promising Phosphorescent Materials. Journal of Physical Chemistry A,2007,111(2); 287-294.· Pan QJ,Zhou X,Fu HG*,et al. Theoretical studies on spectroscopic properties of binuclear palladium(Ⅱ) halide with phosphine ligands Journal of Photochemistry and Photobiology A: Chemistry,2007,188(2-3),287-292.· Xie Y,Fu HG*,Yu HT,et al. 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论文发表清单

2000年以来发表的论文清单1. Zhou, B.; Li, X.; Li, Y.; Xu, Y.; Zhang, Z.; Zhou, M; Zhang, X.; Liu, Z.; Zhou, J.; Cao, C.; Yu, B.;* Wang, R.,*Discovery and Development of 2H-thiazolo[3,2-a]pyrimidine Derivatives as General Inhibitors of Bcl-2 Family Proteins,ChemMedChem, 2011, 6, 904–921.2. Li, Y.; Zhao, Y.; Wang, R.* Automatic Tailoring and Transplanting: A Practical Method that Makes Virtual Screening More Useful, J. Chem. Inf. Model., 2011, 51, 1474–1491.3. Zhang, Y.; Lin, F.; Deng, X.-D., Wang, R.-X.*, Ye, D.-Y.*, Molecular Modeling of the Three-Dimensional Structure of Human Sphingomyelin Synthase, Chinese J. Chem. 2011, in press.4. Li, Y.; Liu, Z.; Wang, R.*, “Test MM-PB/SA on True Conformational Ensembles of Protein-Ligand Complexes”, J. Chem. Inf. Model.2010, 50, 1682-1692.5. Lin, F.; Wang, R.*, “Systematic Derivation of AMBER Force Field Parameters Applicable to Zinc”, J. Chem. Theory Comput. 2010, 6, 1852-1870.6. Cheng, T.; Liu, Z.; Wang, R.*, “A Knowledge-Based Strategy for Improving the Accuracy of Scoring Functions in Binding Affinity Prediction”, BMC Bioinformatics, 2010, 11, 193-208.7. Li, X.; Li, Y.; Cheng, T.; Liu, Z.; Wang, R.*, “Evaluation of the Performance of Four Molecular Docking Programs on a Diverse Set of Protein-Ligand Complexes”, J. Comp. Chem. 2010, 31, 2109-2125.8. Shi, H.; Zhou, B.; Li, W.; Shi, Z.; Yu, B.*; Wang, R.*, Synthesis and Anti-tumor Activities of Methyl 2-O-Aryl-6-O-Aryl'-D-Glucopyranosides, Bioorg. Med. Chem. Lett., 2010, 20, 2855-2858.9. Li, X.; Liu, Z.; Li, Y.; Li, J.; Li, J.; Wang, R.*, “A Statistical Survey on the Binding Constants of Covalently Bound Protein-Ligand Complexes”, Mol. Informatics, 2010, 29,87-96.10. Zheng, F.; Lin, F.; Wang, R.; Qing, F.-L. “Synthesis and conformational analysis of D-2-deoxy-2,2-difluoro-4-dihydro-4-thionucleosides”, Org. Biomol. Chem., 2010, 8, 163-170.11. Lin, F.; Wang, R.* “Hemolytic Mechanism of Dioscin Proposed by Molecular Dynamics Simulations”, J. Mol. Model.2010, 16, 107-118.12. Cheng, T.; Li, X.; Li, Y.; Liu, Z.; Wang, R.* “Comparative Assessment of Scoring Functions on a Diverse Test Set”, J. Chem. Inf. Model. 2009, 49, 1079-1093.13. Zhang, X.; Li, X.; Wang, R.* “Interpretation of the Binding Affinities of PTP1B Inhibitors with the MM-GB/SA method and the X-Score Scoring Function”, J. Chem. Inf. Model. 2009, 49, 1033-1048. (cover story)14. Li, Y.; Zhou, B.; Wang, R.* “Rational Design of Tamiflu Derivatives Targeting at the Open Conformation of Neuraminidase Subtype 1”, J. Mol. Graph. Model. 2009, 28, 203-219.15. Li, X.; Wang, R.* “Automatic Identification of Antibodies in the Protein Data Bank”, Chinese Journal of Chemistry, 2009, 27, 23-28.16. Wang, K.; Wu, Y.-S.; Wang, G.-T.; Wang, R.-X.; Jiang, X.-K.; Fu, H.-B.; Li, Z.-T., Hydrogen bonding-mediated foldamer-bridged zinc porphyrin-C60 dyads: ideal face-to-face orientation and tunable donor–acceptor interaction,Tetrahedron, 2009, 65, 7718–7729.17. Zhu, Y.-Y.; Wang, G.-T.; Wang, R.-X.; Li, Z.-T. Intramolecular Six-Membered and Three-Center C-H-O Hydrogen Bonding in 1,4-Diphenyl-1,2,3-Triazoles, Cryst. Growth Des., 2009, 9, 4778–4783.18. Liu, Z. G.; Wang, G. T.; Li, Z. T.; Wang, R.* “Geometrical Preferences of the Hydrogen Bonds on Protein-Ligand Binding Interface Derived from Statistical Surveys and Quantum Mechanics Calculations”, J. Chem. Theory Comput. 2008, 4,1959–1973.19. Lin, F.; Wang, R.* “Molecular modeling of the three-dimensional structure of GLP-1R and its interactions with several agonists”, J. Mol. Model. 2008, 15, 53-65.20. Cai, W.; Wang, G. T.; Du, P.; Wang, R. X.; Jiang, X. K.; Li, Z.T.* “Foldamer Organogels: A Circular Dichroism Study of Glucose-Mediated Dynamic Helicity Induction and Amplification”, J. Am. Chem. Soc. 2008, 130, 13450–13459.21. Yeang, C.; Varshney, S.; Wang, R.; Zhang Y.; Ye D.Y.; Jiang, X. C.* “The domain responsible for sphingomyelin synthase (SMS) activity”, Biochimica et Biophysica Acta-Molecular and Cell Biology of Lipids, 2008, 1781, 610-617.22. Cheng, T.; Zhao, Y.; Li, X.; Lin, F.; Xu, Y.; Zhang, X.; Li, Y.; Wang, R.*; Lai, L. “Computation of Octanol-Water Partition Coefficients by Guiding an Additive Model with Knowledge”, J. Chem. Inf. Model. 2007, 47, 2140-2148.23. Zhao, Y.; Cheng, T.; Wang, R.* “Automatic Perception of Organic Molecules Based on Essential Structural Information”, J. Chem. Inf. Model. 2007, 47, 1379-1385.24. Wang, R.*; Lin, F.; Xu, Y.; Cheng, T. “I-SOLV: A new surface-based empirical model for computing solvation free energies”, J. Mol. Graph. Model. 2007, 26, 368-377.25. Feng, D.-J.; Wang, G..-T.; Wu, J.; Wang, R.-X.; Li, Z.-T.* “Hydrogen bonding-driven elastic bis(zinc)porphyrin receptors for neutral and cationic electron-deficient guests with a sandwich-styled complexing pattern”, Tetrahedron Lett.2007, 48, 6181-6185.26. Li, C.; Wang, G.; Yi, H.; Jiang, X.; Li, Z.*;Wang, R.* “Diastereomeric Recognition of Chiral Foldamer Receptors for Chiral Glucoses”, Org. Lett. 2007, 9, 1797-1800.27. Ma, D.*; Yu, S.; Li, B.; Chen, L.; Chen, R.; Yu, K.; Zhang, L.; Chen, Z.; Zhong, D.; Gong, Z.; Wang, R.; Jiang, H.; Pei, G. “Synthesis and Biological Evaluation of 1,3,3,4-Tetrasubstituted Pyrrolidine CCR5 Receptor Antagonists. Discovery of a Potent and Orally Bioavailable Anti-HIV Agent”, ChemMedChem, 2007, 2, 187-193.28. Tang, G.; Ding, K.; Nikolovska-Coleska, Z.; Yang, C.-Y.; Qiu, S.; Shangary, S.; Wang, R.; Guo, J.; Gao, W.; Meagher, J.; Stuckey, J.; Krajewski, K.; Jiang, S.; Roller, P. P.; Wang, S.* “Structure-Based Design of Flavonoid Compounds As a New Class of Small-Molecule Inhibitors of the Anti-apoptotic Bcl-2 Proteins”, J. Med. Chem. 2007, 50, 3163-3166.29. Tang, G.-Z.; Yang, C.-Y.; Nikolovska-Coleska, Z.; Guo, J.; Qiu, S.; Wang, R. X.; Gao, W.; Wang, G.-P.; Stuckey, J.; Krajewski, K.; Jiang, S.; Roller, P. P.; Wang, S. M.* “Pyrogallol-based molecules as potent inhibitors of the antiapoptotic Bcl-2 proteins”, J. Med. Chem. 2007, 50, 1723-1726.30. Lu, Y.; Wang, R.; Yang, C.-Y.; Wang, S.* “Analysis of ligand-bound water molecules in high-resolution crystal structures of protein-ligand complexes”. J. Chem. Inf. Model. 2007, 47, 668-675.31. Zhang M.C.; Ling, Y.; Yang, C.-Y.; Liu, H. P.; Wang, R. X.; Wu, X. H.; Ding, K.; Zhu, F.; Griffith, B. N.; Mohammad, R. M.; Wang, S. M.*; Yang, D. J. “A novel Bcl-2 small molecule inhibitor 4-(3-methoxy-phenylsulfannyl)-7-nitro-benzofurazan-3-oxide (MNB)-induced apoptosis in leukemia cells”. Annals. Hematology, 2007, 86, 471-481.32. Xu, Y.; Wang, R.* “A Computational Analysis of the Binding Affinities of FKBP12 Inhibitors Using the MM-PB/SA Method”, Proteins, 2006, 64, 1058-1068.33. Yu, S.; Pu, X.; Cheng, T.; Wang, R.; Ma, D.* “Total Synthesis of Clavepictines A and B and Pictamine”,Org. Lett.2006, 8, 3179-3182.34. Ma, D.*; Jiang, Y.; Chen, F.; Gong, L.-k.; Ding, K.; Xu, Y.; Wang, R.; Ge, A.; Ren, J.; Li, J.; Li, J.; Ye, Q. “Selective Inhibition of Matrix Metalloproteinase Isozymes and in Vivo Protection against Emphysema by Substituted -Keto Carboxylic Acids”, J. Med. Chem. 2006, 49, 456-458.35. Wang, G.; Nikolovska-Coleska, Z.; Yang, C.-Y.; Wang, R.; Tang, G.; Guo, J.; Shangary, S.; Qiu, S.; Gao, W.; Yang, D.; Meagher, J.; Stuckey, J.; Krajewski, K.; Jiang, S.; Roller, P. P.; Abaan, H. O.; Tomita, Y.; Wang, S.* “Structure-Based Design of Potent Small-Molecule Inhibitors of Anti-Apoptotic Bcl-2 Proteins”, J. Med. Chem., 2006, 49, 6139-6142.36. Yang, C.-Y.; Wang, R.; Wang, S.* “M-Score: A Knowledge-Based Potential Scoring Function Accounting for Protein Atom Mobility”, J. Med. Chem. 2006, 49, 5903-5911.37. Wang, R.; Fang, X.; Lu, Y.; Yang, C.-Y.; Wang, S.* “The PDBbind Database: Methodologies and Updates”, J. Med. Chem. 2005, 48, 4111-4119.38. Yang, C.-Y.; Wang, R.; Wang, S.* “A Systematic Analysis of the Effect of Small-Molecule Binding on Protein Flexibility of the Ligand-Binding Sites”, J. Med. Chem.2005, 48, 5648-5650.39. Song, H.; Wang, R.; Wang, S; Lin, J.* “A low-molecular-weight compound discovered through virtual database screening inhibits Stat3 function in breast cancer cells”, Proc. Natl. Acad. Sci. 2005, 102, 4700-4705.40. Wang R.; Lu Y.; Fang X.; Wang S.* “An Extensive Test of 14 Scoring Functions Using the PDBbind Refined Set of 800 Protein-Ligand Complexes”, J. Chem. Inf. Comput. Sci. 2004, 44, 2114-2125.41. Real P. J.; Cao, Y.; Wang R.; Nikolovska-Coleska Z.; Sanz-Ortiz J.; Wang S.; Fernandez-Luna J. L.* “Breast cancer cells can evade apoptosis-mediated selective killing by a novel small molecule inhibitor of Bcl-2”, Cancer Research, 2004,64, 7947-7953.42. Wang, R.; Fang, X.; Lu, Y.; Wang, S.* “The PDBbind Database: Collection of Binding Affinities for Protein-Ligand Complexes with Known Three-Dimensional Structures”, J. Med. Chem. 2004, 47, 2977-2980.43. Nikolovska-Coleska, Z.; Wang, R.; Fang X, Wang, S.* “Development and optimization of a binding assay for the XIAP BIR3 domain using fluorescence polarization”, Analytical Biochemistry 2004, 332, 261-273.44. Nikolovska-Coleska, Z.; Xu, L.; Hu, Z.; Tomita, Y.; Li, P.; Roller, P. P.; Wang, R.; Fang, X.; Guo, R.; Zhang, M.; Lippman, M. E.; Yang, D.; Wang, S.* “Discovery of Embelin as a Cell-Permeable, Small-Molecular Weight Inhibitor of XIAP through Structure-Based Computational Screening of a Traditional Herbal Medicine Three-Dimensional Structure Database”, J. Med. Chem.2004,47,2430-2440.45. Gao, Y.; Wang, R.; Lai, L.* “Structure-based method for analyzing protein-protein interfaces”, J. Mol. Model.2004, 10, 44-54.46. Wang, R.; Lu, Y.; Wang, S.* “Comparative Evaluation of Eleven Scoring Functions for Molecular Docking”, J. Med. Chem. 2003, 46, 2287-2303.47. Leach, A. G.; Wang, R.; Wohlhieter, G. E.; Khan, S. I.; Jung, M. E.; Houk, K. N.* “Theoretical Elucidation of Kinetic and Thermodynamic Control of Radical Addition Regioselectivity”, J. Am. Chem. Soc. 2003, 125, 4271-4278.48. Wang, R.; Lai, L.; Wang, S.* “Further development and validation of empirical scoring functions for structure-based binding affinity prediction”, J. Comput.-Aided Mol. Des. 2002, 16, 11-26.49. Gao, Y.; Wang, R.; Lai, L.* “New method to analyze protein-protein interaction interface”, Acta Phys.-Chim. Sinica 2002, 18, 676-679.50. Wang, R.; Wang, S.* “How does consensus scoring work for virtual library screening? An idealized experiment”, J. Chem. Inf. Comput. Sci. 2001, 41, 1422-1426.51. Rong, S.; Hu, Y.; Enyedy, I.; Powis, G.; Meuillet, E. J.; Wu, X.; Wang, R.; Wang, S.*; Kozikowski, A. P. “Molecular Modeling Studies of the Akt PH Domain and Its Interaction with Phosphoinositides”, J. Med. Chem. 2001, 44, 898-908.52. Chen, J.; Wang, R.; Taussig, M.; Houk, K. N.* “Quantitative Calculation of Antibody-Antigen Binding: Steroid-DB3 Binding Energies by the Linear Interaction Energy Method”, J. Org. Chem. 2001, 66, 3021-3026.53. Liu, Y.; Feng, Y.; Wang, R.; Gao, Y.; Lai, L.* “Quinoline-4-acetamides as sPLAB2B Inhibitors”, Bioorgan. & Med. Chem. Lett. 2001, 11, 1639-1641.54. Liu, Y.; Feng, Y.; Gao, Y.; Wang, R.; Lai, L.* “Structure-based design and synthesis of novel type quinoline as secretory PLA(2) inhibitors”, Acta Phys.-Chim. Sinica 2001, 59, 1751-1755.55. Chen, J.; Deng, Q.; Wang, R.; Houk, K. N.*; Hilvert, D.* Shape Complementarity, Binding Site Dynamics, and Transition State Stabilization: A Theoretical Study of Diels-Alder Catalysis by Antibody 1E9, ChemBioChem 2000, 1, 255-261.56. Wang, R.; Gao, Y.; Lai, L.* LigBuilder: A Multiple-Purposed Program for Structure-Based Drug Design, J. Mol. Model. 2000, 6, 498-516.57. Wang, R.; Gao, Y.; Lai, L.* Calculating Partition Coefficients by Atom-Additive Method, Perspective in Drug Discovery & Design. 2000, 19, 47-66.

问题一:教师近年来主要教育教学和科研成果怎么写 围绕课堂教学 加强教育科研 河北联校河北学校 新课程改革对教师的教学行为提出了许多新要求,它要求教师必须尽快地从传统的角色中走出来,成为新课程的研究者、实话者和创造者。课程改革的核心环节是课程实施,而课程实施的关键是教学改革。近年来,我校结合农村小学实际,紧紧抓住课堂教学这一重点环节,采取分层推进、滚动发展的办法,扎扎实实地进行教育科研,教师们投身科研的热情空前高涨,教师的教育教学行为发生了根本转变,一批教学骨干迅速成长,教师队伍正向专业化迈进,学生的学习情感和态度也发生了积极变化。下面是我校开展教育科研的一点体会。 一、转变观念,形成教育科研的良好氛围 首先,学校领导要充分认识教育科研的重要性和必要性,把教育科研摆在保证学校可持续发展的战略地位上来,要有开展教育科研的责任感、紧迫感,并且将这种责任感、紧迫感传递给广大教师,引导大家从“教书匠型”走向“研究型”。领导要从繁杂的事务性工作中跳出来,带头进行教育科研,在抓好科研骨干培养的同时,引领全体教师走上科研兴校的“阳光大道”,形成良好的研究氛围。 二、健全科研机构和制度,建立有效的保证措施 学校有限的人力物力资源应该用在刀刃上,教育科研就是学校发展的利刃。可以从以下几方面给予保证:一是由教导处牵头,精选本校有研究热情的骨干教师组成校教科室,负责教育科研的组织、管理、协调工作;二是健全教育科研的各项规章制度,如《教育科研奖惩制度》、《理论学习制度》等;三是从行政管理的角度加强教育科研工作的管理考核,并纳入教师教育工作考核,给予奖惩;四是在研究经费上给以优先,保证研究工作的各项费用开支。 三、结合实际,以本校教学中的最大问题为科研选题的契入点 作为研究基础薄弱的农村小学,教育科研应以学科研究为基础,以课堂教学为重点。因此,我们在认真调查研究本校师资和教学现状的基础上,坚持教育科研与教师日常教学工作相结合,确定了“学生自主学习能力的培养”这一课题,并积极制定方案步入发展的正轨。 四、加强学习,培养本校研究教师 由于农村学校教师的研究水平和研究意识普遍不高,因此,加强教育科研理论的学习培训显得非常迫切。教科室在精心准备的基础上,开展了两方面的学习培训:一为教育科研操作层面的知识培训,如教育科研的含义、如何选题、如何开展研究、研究的方法、教育科研的写作知识等,破除教育科研的神秘感,帮助教师克服畏难情绪;另一方面是学习与本校研究课题相关的理论知识,做好理论储备。需要注意的是学习培训要坚持贯彻研究活动的始终,为科研保驾护航。 五、研究实践与课堂教学、常规教研紧密结合,以课题研究为核心开展系列活动 在研究的核心阶段即研究实践阶段,必须坚持以课堂为主阵地、以常规教研为载体,把教育科研课题的研究融入教师的教学工作中,通过日常的教学、教研和一系列有目的的活动推进科研的深入开展,使课题研究得到良性发展。 1.定期开展现状分析。教育科研的目的是针对问题,开展研究,解决问题。由于研究是在动态的过程中进行的,随时都可能出现新情况、新问题,因此,及时进行现状调查与分析就显得很重要。为全面、准确掌握当前我校课堂教学中在学生活动方面存在的问题,使研究工作做到对症下药,通过学校领导与主研人员的随机听课、访问等形式了解现状;同时,建立研究个案(个别教师、班级、学生),进行跟踪调查。然后汇总,在充分分析的基础上及时总结,为进一步开展研究,改进课堂教学提供依据。 2.结合研究课题开展优秀研究课教案展评活动。备好课是上好课的前提,进行课题研究更是如此。所以我们特别重视课前的准备工作,除了......>> 问题二:申请者本人近三年来主要研究成果怎么写 1、 申请者本人近三年来主要研究成果当然是据实填写本人在最近三年的科研项目及主要成就,这部分内容只能是自己填写了,其他人是标准不了的。 2、填写论文的时候,要注明刊物的年、期或出版社、出版日期。 问题三:科研工作基本情况及主要成果,贡献怎样填写 这个很容易啊,推荐按照成果等级以及你在里面的排名次序来写,你最有代表的科研成果在前面,比如国家级项目、省部级项目等等,然后项目课题你在里面的排名,比如写作为第一完成人完成某省社科规划基金项目《xxx》,项目成果包括国际论文几篇。。。研究报告、专利等等,这个没什么具体规定,写明白就可以。 问题四:硕士学位论文期间取得的科研成果格式怎么写 论文大体格式如下,同时也要参考下你们学校的具体要求;因为不同学校的细节要求会有所差别的:学位论文是研究生从事科研成果的主要表现,它集中表明了作者在研究工作中获得的新的发明、理论和成果,是研究生申请硕士学位的重要依据,也是科研领域中的重要文献资料和社会的宝贵财富。一、论文内容要求研究生学位论文应用汉语撰写。论文内容应层次分明,数据可靠,文字简练,逻辑分明,推理严谨,立论正确。论文内容一般应由10个主要部分组成,依次为:1、封面,2、中英文摘要,3、目录,4、符号说明,5、引言,6、论文主体,7、攻读学位期间发表的学术论文目录,8、致谢,9、参考文献,10、附录。各部分的具体要求如下:1、封面采用研究生处下发的统一封面,封页上填写论文题目、作者姓名、指导教师姓名、学科(专业)、答辩日期等内容。2、中文摘要论文摘要应包含:①课题的缘起,即引发课题研究的问题;②课题研究的目的与目标;③课题研究所取得的成果和适用范围;④课题研究所进行的实验,计算等论证;⑤课题成果的评估比较。3、目录目录应将文章内的章节标题依次排列,标题应该简明扼要。4、符号说明论文中所用符号表示的意义及单位。5、引言论文的引言实际上是摘要的进一步,主要包括论文的主旨目的,本课题的发展情况回顾和展望;他人研究成果分析,作者的主要观点、成果介绍。6、论文主体论文涉及的学科领域较多,但论文的框架而言包括:理论叙述,公式推导,定理、定律的引用,以及插图,表格,实验方法说明,实验结果分析,本文结论及结果分析、讨论等。7、攻读学位期间发表的学术论文目录按学术论文发表的时间顺序,列齐本人在攻读学位期间发表或已录用的论文清单(发表刊物名称、卷册号、页码、年、月及论文署名)。其中应对发表刊物类别作具体说明,如:是否属于本校规定的学术刊物;论文署名单位是否为郑州轻工业学院及作者排列顺序。8、致谢对给予各类资助、指导和协助完成研究工作以及提供各种对论文工作有利条件的单位及个人表示感谢。致谢应实事求是,切忌浮夸庸俗之词。9、参考文献参考文献应按文中出现的顺序列出,可以列在文章末尾,也可以列在正文的末尾。特别在引用别人的科研成果时,应加以说明,避免论文抄袭现象的发生。10、附录主要列入正文内过分冗长的公式推导,供查读方便所需的辅助性数学工具或表格;重复性数据图表;论文中使用的缩写、程序全文及说明等。二、撰写具体要求1、封面上的内容一律用四号黑体打印,论文题目不超过36个汉字。2、硕士学位论文中文摘要字数为原文的3%以内。①论文题目为3号黑体字,可以分成1或2行居中打印。②论文题目下空一行居中打印“摘要”二字(三号黑体),字间空一格。③“摘要”二字下空一行打印摘要内容(四号宋体)。每段开头空二格,标点符号占一格。④摘要内容后下空一行打印“关键词”三字(四号黑体),其后为关键词(四号宋体)。关键词数量为4~6个,每一关键词之间用逗号分开,最后一个关键词不打标点符号。3、论文英文题目全部采用大写字母,可分成1~3行居中打印。每行左右两边至少留五个字符空格。①题目下空三行居中打印“ABSTRACT”,再下空二行打印英文摘要内容。②摘要内容每段开头留四个字符空格。③摘要内容后下空二行打印“KEYWORDS”,其后关键词小写,每一关键词之间用逗号分开,最后一个关键词不打标点符号。4、“目录”二字(三号黑体),下空两行为章、节、小节及其开始页码。章、节、小节分别以1、1.1、1.1.1等数字依次标出。5、标题:每章标题以三号黑体居中打印;“章”下空两行为“节”以四号黑体左起打印;“节”下空一行为“小节”,以......>> 问题五:本课题前人的主要研究成果怎么写 先要去查阅与本课题有关的研究资料,主要关注(就是前任主要研究成果): 1.相关研究已经研究到什么地步。 2.相关研究进几年来不同流派的主要观点,进行简要的叙述。 3.前人已经得出的结论有什么值得借鉴的和不足的。这部分要立足于你自己的课题研究,这是根本切入点,因为课题研究新颖性就在这里,需要你在前人的基础上有创新和提高。比如前人研究的不足可以分观点的局限性和研究手段(方法)的局限性等,这样你可以针对前人理论中不足或者没有涉及的方面进行研究。 4.最重要的这部分既要有事实依据,也要简明扼要。就是说要对前人观点进行整合,分析比同流派观点背后的价值取向,可以适当地引用重要观点。当然不要引用太多,关键还是在于你的概括,你分析得越清晰,你之后课题研究的思路就越清楚,毕竟这部分只是铺垫部分不能显得太复杂,这样很容易头重脚轻。 问题六:科研项目的成果形式具体有哪些 1、论文和专著2、自主研发的新产品原型3、自主开发的新技术4、发明专利5、实用新型专利6、外观设计专利7、带有技术参数的场纸等8、基础软件9、应用软件10、其他 问题七:主要科研成果、学术论文或著(译)作一览表怎么写? 是把论文打印出来,还是把参与过的项目以及写过的论文罗列一下就可以? 查看原帖>> 问题八:简历上的主要学术成果是什么意思? 一般是指研究成果,一般都是要得到市级,省级甚至更大级别的奖励吧,比如获什么奖,在什么期刊上发表论文之类的吧。 很多简历中有这项好像不是必填的,如果必须填,想想你有没有学攻上的获奖,或者在什么期刊杂志上发表过文章?有就填上去。 没有的话没,干脆写上否。 问题九:结题报告书中主要研究成果的内容怎么填 就是意思你的科研最终成果是以什么形式来体现,来参加结题,比如理论研究的话,就是在哪个级别的期刊上发了几篇科研论文、或者是项目形式,最终的项目展示,硬件或是软件,或应用于生产实践中等等。预期成果就是最终你能做到什么程度,比如结题时实习某个工厂的某条生产线改造,已成功应用于其中,并已安全稳定运行多少天等。仅供参考 问题十:教师近年来主要教育教学和科研成果怎么写 围绕课堂教学 加强教育科研 河北联校河北学校 新课程改革对教师的教学行为提出了许多新要求,它要求教师必须尽快地从传统的角色中走出来,成为新课程的研究者、实话者和创造者。课程改革的核心环节是课程实施,而课程实施的关键是教学改革。近年来,我校结合农村小学实际,紧紧抓住课堂教学这一重点环节,采取分层推进、滚动发展的办法,扎扎实实地进行教育科研,教师们投身科研的热情空前高涨,教师的教育教学行为发生了根本转变,一批教学骨干迅速成长,教师队伍正向专业化迈进,学生的学习情感和态度也发生了积极变化。下面是我校开展教育科研的一点体会。 一、转变观念,形成教育科研的良好氛围 首先,学校领导要充分认识教育科研的重要性和必要性,把教育科研摆在保证学校可持续发展的战略地位上来,要有开展教育科研的责任感、紧迫感,并且将这种责任感、紧迫感传递给广大教师,引导大家从“教书匠型”走向“研究型”。领导要从繁杂的事务性工作中跳出来,带头进行教育科研,在抓好科研骨干培养的同时,引领全体教师走上科研兴校的“阳光大道”,形成良好的研究氛围。 二、健全科研机构和制度,建立有效的保证措施 学校有限的人力物力资源应该用在刀刃上,教育科研就是学校发展的利刃。可以从以下几方面给予保证:一是由教导处牵头,精选本校有研究热情的骨干教师组成校教科室,负责教育科研的组织、管理、协调工作;二是健全教育科研的各项规章制度,如《教育科研奖惩制度》、《理论学习制度》等;三是从行政管理的角度加强教育科研工作的管理考核,并纳入教师教育工作考核,给予奖惩;四是在研究经费上给以优先,保证研究工作的各项费用开支。 三、结合实际,以本校教学中的最大问题为科研选题的契入点 作为研究基础薄弱的农村小学,教育科研应以学科研究为基础,以课堂教学为重点。因此,我们在认真调查研究本校师资和教学现状的基础上,坚持教育科研与教师日常教学工作相结合,确定了“学生自主学习能力的培养”这一课题,并积极制定方案步入发展的正轨。 四、加强学习,培养本校研究教师 由于农村学校教师的研究水平和研究意识普遍不高,因此,加强教育科研理论的学习培训显得非常迫切。教科室在精心准备的基础上,开展了两方面的学习培训:一为教育科研操作层面的知识培训,如教育科研的含义、如何选题、如何开展研究、研究的方法、教育科研的写作知识等,破除教育科研的神秘感,帮助教师克服畏难情绪;另一方面是学习与本校研究课题相关的理论知识,做好理论储备。需要注意的是学习培训要坚持贯彻研究活动的始终,为科研保驾护航。 五、研究实践与课堂教学、常规教研紧密结合,以课题研究为核心开展系列活动 在研究的核心阶段即研究实践阶段,必须坚持以课堂为主阵地、以常规教研为载体,把教育科研课题的研究融入教师的教学工作中,通过日常的教学、教研和一系列有目的的活动推进科研的深入开展,使课题研究得到良性发展。 1.定期开展现状分析。教育科研的目的是针对问题,开展研究,解决问题。由于研究是在动态的过程中进行的,随时都可能出现新情况、新问题,因此,及时进行现状调查与分析就显得很重要。为全面、准确掌握当前我校课堂教学中在学生活动方面存在的问题,使研究工作做到对症下药,通过学校领导与主研人员的随机听课、访问等形式了解现状;同时,建立研究个案(个别教师、班级、学生),进行跟踪调查。然后汇总,在充分分析的基础上及时总结,为进一步开展研究,改进课堂教学提供依据。 2.结合研究课题开展优秀研究课教案展评活动。备好课是上好课的前提,进行课题研究更是如此。所以我们特别重视课前的准备工作,除了......>>

发表论文清样

清样的意思是从最后校改的印刷版上打下来的校样,有时也指最后一次校定、准备付印的校样。

指从最后校改的印刷版上打下来的校样,有时也指最后一次校定的校样。也叫付印样、付型样。

刘半农《读海上花列传》:“当其清样打成时,恰巧我经过上海,馆中就把校阅清样这一件事嘱咐了我。”

巴金《发的故事序》:“在这时候印刷局送来了《发的故事》的清样。”

论文清样重点包括以下内容:

1、论文的中、英文标题、摘要和关键词。

2、作者姓名、单位、地址和邮编及脚注中的内容。

3、正文中的图题、标题及图表中的文字和数字。

4、正文中和公式中出现的物理量符号及其单位的大小写、上下角标、矢量。

5、参考文献在正文中引出的位置及文后标注的项目(刊名、年、卷、期、页码等)。

什么是清样稿 这个问题很简单,就是文章印刷之前,编辑部已经将您文章排好版了,不会再有大的变化了的版本,让作者在检查确亥一下。这个版本的稿件就叫清样稿。 论文的清样来了,看看这是什么意思 就是纸质样刊的电子版,有些人拿样刊时间确实来不及了,就可以把清样拿去快印。 什么是文章清样 稿件经排字或制版后印出供校对用的样张称为校样,最后一次校正付印的校样称为“清样” 清样是什么意思 词目:清样拼音:qīng yàng 基本解释 [final proof] 从最后校改的印刷版上打下来的校样,有时也指最后一次校定、准备付印的校样 详细解释 从最后校改的印刷版上打下来的校样,有时也指最后一次校定的校样。也叫付印样、付型样。 刘半农 《读<海上花列传>》:“当其清样打成时,恰巧我经过 上海 ,馆中就把校阅清样这一件事嘱咐了我。” 巴金 《<发的故事>序》:“在这时候印刷局送来了《发的故事》的清样。” 巴金 《豪言壮语》:“我最近看了我的《爝火集》的清样。” 编辑本段概述 校样、红样、清样、小样是用于印刷行业的名词: 校样——是文稿和图稿的排入电脑后出的样稿,是用来让原作者用来修改用的,改正里面的原作错误和录入错误。 小样——是继校样后,用来让作者更正样稿的版式错误和在前样稿中没改正的错误,是带有格式的文稿样版的缩小样。 清样——是有大致的排版格式,不是正式的文稿样版。 红样——是指最后的校样,是用印刷机或打印机制成的成品样稿,用来让用户最终确定稿件人终样,之后就可以上机印刷了。 想问一下SCI论文怎么清样?? 看编辑给你的信怎么说的。不同的杂志要求不同,有点要求直接在pdf上修改,有的要求页码,行号,原文,更改后,注释,以附件形式发回,当然,现在很多杂志可以在线校正清样。 文章接受后一般多久能收到清样 应该是投稿后编辑收到稿件的时间,退稿修改后编辑再收到稿件时间,通过后发布到网络上版本的时间,可以接受出印刷版时间。 一般杂志接受文章多久后寄出清样 我就是编辑,要不要来玩这里写稿啊

论文清样与见刊区别如下:

清样基本上是出刊前一周出来,印刷完成后就会寄样刊给你,见刊基本上印刷好2-3天就能收到。但是清样的时间每本期刊的情况不一样。

一般来说期刊清样至少会在见刊前7天可以完整的给到。清样就是排版好文章的电子版格式,包含封面,目录,以及作者文章所在页排版样式。所以可能作者要的着急,清样可以提前给到,目录上可能有所差别,在期刊没有截稿情况下。

期刊,定期出版的刊物。如周刊、旬刊、半月刊、月刊、季刊、半年刊、年刊等。由依法设立的期刊出版单位出版刊物。

期刊出版单位出版期刊,必须经新闻出版总署批准,持有国内统一连续出版物号,领取《期刊出版许可证》。

从广义上来讲,期刊的分类,可以分为非正式期刊和正式期刊两种。非正式期刊是指通过行政部门审核领取“内部报刊准印证”作为行业内部交流的期刊(一般只限行业内交流不公开发行)。

但也是合法期刊的一种,一般正式期刊都经历过非正式期刊过程。正式期刊是由国家新闻出版署与国家科委在商定的数额内审批,并编入“国内统一刊号”,办刊申请比较严格,要有一定的办刊实力,正式期刊有独立的办刊方针。

论文清样发表

有点不正常,一般怎么也要提前一个月发清样让你核对的,因为核对完就要发印刷厂印刷了,你最好打电话给编辑部确定一下。

很正常的不过你要催这一点万一他们把你的另一个给忘记了呢对不对呀自己的事情还是自己想着一点比较好

还是比较正常,你可以联系杂志社那边问问。一般来说如果刊期是12月份的话,清样会在出刊之后邮寄给你,假如你这个是半月刊的话,就会是12月中旬之后寄给你样刊。而所谓最后检查核实会在录用下发之后,再次以电子版形式问你是否确认。不是说12月就是12月初几号的样子。一般加上邮寄时间就是中下旬的样子。如果你还有什么疑问需要了解的话,可以与我沟通联系。

论文清样,是指论文经排字或制版后印出供校对用的样张称为校样,最后一次校正付印的校样称为“清样”。

这是出版术语,具体可以理解为,在论文要出版的时候,编辑会打印出来杂志草稿,方便校对和排版,经过组版人员对大样的修改之后,发出的纸样就可以叫做清样了,然后将清样下发到车间改正后,就可以发排了。

扩展资料

论文清样重点包括以下内容:

1、论文的中、英文标题、摘要和关键词;

2、作者姓名、单位、地址和邮编及脚注中的内容;

3、正文中的图题、标题及图表中的文字和数字;

4、正文中和公式中出现的物理量符号及其单位的大小写、上下角标、矢量;

5、参考文献在正文中引出的位置及文后标注的项目(刊名、年、卷、期、页码等)。

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