Evidence-based Complementary and Alternative Medicine(eCAM)影响因子从前年的一跃到去年的,一下子坐上了补充与替代医学领域的顶尖杂志的位置,不料今年一下子又走下神坛,影响因子大幅回落到。对于这个结果的出现早有苗头,自从去年的影响因子公布以来,做为开放获取杂志,该杂志的稿件处理费从1350美金立即涨至1500美金,发表文章数由542激增为866篇,其中以special issue数量增加最为明显,但引用次数没有大的变化,所以今年IF大幅降低理所当然。一份好的学术期刊,在保证审稿公正性的同时更需要懂得取舍,不能扩张太快,否则必然会有此结果的出现。值得指出的是,国内第一份结合医学期刊Chinese Journal of Integrative Medicine(CJIM,《中国结合医学杂志》,陈可冀院士主编)今年的影响因子首次破1,达到,十分不易,而创刊百年的Chinese Medical Journal –Peking(CMJ,《中华医学杂志》英文版)的影响因子才,记得几年前我向CMJ投稿,汇寄100元审稿费后将近4个月才有初审结果回来,专家审稿结果让人大跌眼镜,打去编辑部询问,责编说该文要大改,再审周期也很长,建议作者自己撤稿。气愤之余遂撤稿改投Chin Sci Bull(《科学通报》英文版,IF=),一月后审稿完毕告知小修后录用
2022年的影响因子。据官方数据显示,身为四大神刊之首的lifemedicine杂志,2022年的影响因子。和去年相比,今年又降了分。lifemedicine杂志水平一般,因为是开源期刊,所以收费比较贵,而且发文量比较大,导致在业内的评价水平很低。lifemedicine杂志是1936年卢斯创办于纽约。原为周刊,1978年9月改月刊。时代出版公司出版。内容以专题照片、特写为主,题材广泛。
收录起始年 2014 本刊收录在: MEDLINE(2011年) 本刊收录在Web of Science: SCIE(2009版) 本刊收录在Web of Science: SCIE(2012版) 本刊收录在Web of Science: SCIE(2013版) 点击: 查看SCI影响因子(2009) 提示: Impact Factor:; 5-Year Impact Factor: 点击: 查看SCI影响因子(2010) 提示: Impact Factor: ; Rank: 713 点击: 查看SCI影响因子(2014) 提示: Impact Factor: , Rank: 463 点击: 查看SCI影响因子(2014) 提示: Impact Factor
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: .、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,影响因子在以上的论文有50余篇,其中影响因子在以上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:.·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,.· 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 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 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 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. A first-principles investigation into the ferroelectric and antiferrodistortive instabilities of cubic SrTiO3,Journal of Physics: Condensed Matter,2007,19,506213(9pp)· Pan QJ,Zhou X,Fu HG*,et alStructures and electronic spectra of [Pt2(P2O5H2)4X2]4– (X = Cl,Br and I): a comparative study of ab initio and density functional theory Inorganic Chemistry Communications 2007,10,183–186.· Li SD,Jing LQ,Fu HG*,et al. Photoinduced charge property of nanosized perovskite-type LaFeO3 and its relationships with photocatalytic activity under visible irradiation. Materials Research Bulletin 2007,42,203-212.· Yang PP,Fu HG,Lin J*,et al. MCM-41 functionalized with YVO4: Eu3+: a novel drug delivery system. Nanotechnology 2007,18,235703(6pp).· Yang PP,Fu HG,Lin J*,et al. Luminescence functionalization of SBA-15 by YVO4: Eu3+ as a novel drug delivery system. Inorg. Chem. 2007,46,3202-3211.· Jing LQ,Fu HG*,Wang BQ,et al. Effects of Sn dopant on the photoinduced charge property and photocatalytic activity of TiO2 nanoparticles. Applied Catalysis B,2006,62,282-291.· Jing LQ,Xin BF,Fu HG*,et al. Effects of Surface Oxygen Vacancies on Photophysical and Photochemical Processes of Zn-Doped TiO2 Nanoparticles and Their Relationships. Journal of Physical Chemistry B2006,110,17860-17865.· Pan QJ,Fu HG*,Yu HT,et al. A Theoretical Insight Into Electronic Structures and Spectroscopic Properties of [Pt2(pop)4]4–,[Pt2(pcp)4]4– and Related Derivatives (pop = P2O5H22– and pcp = P2O4CH42–) Inorganic Chemistry,2006,45(21),8729–8735.· Liu KS,Zhou W,Fu HG*,et al. Influence of calcination temperatures on the photocatalytic activity and photo-induced hydrophilicity of wormhole-like mesoporous TiO2. Nanotechnology 2006,17,1363-1369.· Liu KS,Fu HG*,Shi KY,et al. Hydrophilicity and formation mechanism of large-pore mesoporous TiO2 thin films with tunable pore diameters. Nanotechnology 2006,17,3641-3648.· Pan QJ,Zhang HX*,Fu HG,et al “Theoretical Studies on Metal–Metal Interaction and Intrinsic 1,3[σ*(d)σ(s/p)] Excited States of Binuclear d10 Complexes with Bridging Phosphine Ligands” European Journal of Inorganic Chemistry 2006 (5),1050-1059.· Jing LQ,Wang DJ,Fu HG*,et al. Effects of noble metal modification on surface oxygen composition,charge separation and photocatalytic activity of ZnO nanoparticles. Journal of Molecular Catalysis A 2006,244,193-200.· Pan QJ,Fu HG*,Yu HT,et al Substituent effect on the structure and luminescence of binuclear Au(I) complexes: An ab initio study. Chemical Physics Letters 2006,426(4-6),257-262.· Jing LQ,Qu YC,Fu HG*,et al. Review of photoluminescence performance of nano-sized semiconductor materials and its relationships with photocatalytic activity. Solar Energy Materials & Solar Cell 2006,90,1773-1787.· Pan QJ,Fu HG*,Yu HT,et al Spectroscopic Properties of Mono- and Binuclear Platinum(Ⅱ) Alkynyl Complexes with Phosphine Ligands: A Theoretical StudyInorganica Chimica Acta 2006,359(10),3306–3314.· Wang BQ,Jing LQ,Fu HG*,et al. Enhancement of the photocatalytic activity of TiO2 nanoparticles by surface-capping DBS groups. Applied Surface Science 2006,252,2817-2825.· Liu KS,Zhang ML,Fu HG*,et al. Uniform TiO2 thin films with anatase nanocrystallites synthesized through evaporation-induced assembly. Journal of Non-Crystalline Solids 2006,352,2284–2287.· Liu KS,Fu HG*,Shi KY,et al. Preparation of large-pore mesoporous nanocrystalline TiO2 thin films with tailored pore diameters. Journal of Physical Chemistry B 2005,109 (40),18719-18722.· Shi KY,Chi YJ,Fu HG*,et al. Controlled growth of mesostructured crystalline iron oxide nanowires and Fe-filled carbon nanotube arrays templated by mesoporous silica SBA-16 film. Journal of Physical Chemistry B2005,109 (7),2546-2551.· Xin BF,Jing LQ,Fu HG*,et al. Effects of simultaneously doped and deposited Ag on the photocatalytic activity and surface states of TiO2. Journal of Physical Chemistry B2005,109,2805-2809.· Liu KS,Zhang ML,Fu HG*,et al. Preparation,characterization,and photo-induced hydrophilicity of nanocrystalline anatase thin films synthesized through evaporation-induced assembly. Nanotechnology 2005,16,3006-3011.· Xin BF,Ren ZY,Fu HG*,et al. Photocatalytic activity and interfacial carrier transfer of Ag–TiO2 nanoparticle films. Applied Surface Science 2005,252,2050–2055.· Liu KS,Zhang ML,Fu HG*,et al. Large pore mesoporous nanocrystalline titania thin films synthesized through evaporation-induced self-assembly. Materials Letters 2005,59,3308 -3310.
chemmatter的认可度高。因为AdvancedOpticalMaterials的任何一个子刊,基本上就代表了此方向上的最高水平。认可度还是高的。2013年出版文章113篇,引用77次,即时影响因子现在逐渐在以发高比例review来提升其影响因子,并且在acs期刊中一直扮演着jacs回收站的角色,是一个方向比较杂的期刊。
Advance in physics属于物理顶级杂志
分别是CA-A,Cancer,Journal,ForClinicians。神刊CA-A,Cancer,Journal,ForClinicians首次突破500分,IF高达。紧随其后的是NEJM,离100仅一步一遥,以位列第二。
没有the plant journal 的杂志,只有plant journal 的杂志,是SCI2区的影响因子
plant cell即《植物细胞》,是美国植物生物学家学会出版的生命科学领域学术刊物,影响因子10左右,在SCI植物类非评论性杂志中排名第一
2020植物科学领域SCI期刊影响因子!2020年6月29日,2019年SCI期刊影响因子新鲜出炉,很多从事科研的人员和在读博士生都会关注一下自己所在领域的期刊影响因子变化情况,大家更关注的是看看自己去年发表文章的期刊影响因子是否发生了变化。虽然“不唯影响因子”是当前的主流做法,但是随着新的影响因子的出炉,网上对影响因子讨论又热了起来。
在PLANTSCIENCE领域,国产植物学SCI期刊影响因子表现抢眼。和2019年公布的数据相比,植物学领域收录的SCI期刊总数为234个,比去年的228个增加了6个。在234中期刊中,影响因子在10以上有5个,和去年持平,分别是Annual Review of Plant Biology,Trends in Plant Science,Nature Plants, Annual Review of Phytopathology和Molecular Plant,其影响因子分别为,,,和;在5-10之间的有11个期刊(去年为8个),这包括最为知名的植物学杂志Plant Cell, Plant Physiology,Plant Journal和Plant Biotechnology Journal等;4-5之间的有11个期刊,3-4之间的有22个期刊,其他期刊影响因子的均在3以下。植物学领域影响因子在3以上所占比例约为21%。
Nature Plants凭借其Nature子刊的光环和大家的持续关注,其影响因子和去年相比又基本持平,影响因子为,稳居非综述类期刊第1位;中国主办的Molecular Plant的影响因子继续上升,影响因子由去年的达到。老牌植物学领域的Plant Cell的影响因子由去年提升到,Plant Physiology和Plant Journal的影响因子也比去年有明显提升,分别从提升到、提升到。而植物学领域中“新贵”期刊New Phytologist和Plant Biotechnology Journal则继续表现抢眼,影响因子均达到了8以上,其中New Phytologist影响因子由上升到,Plant Biotechnology Journal的影响因子由上升到。这里需要提到的是有南京农业大学主办的Horticulture Research的影响因子继续攀升,达到。
中文杂志影响因子大于2的算高。影响因子虽然只和被引次数和论文数直接相关,但实际上,它与很多因素有密切联系。决定影响因子大小的因素现主要有以下5个方面:
(1)论文因素,如论文的出版时滞、论文长度、类型及合作者数等。
(2)期刊因素,如期刊大小(发表论文数)、类型等。
(3)学科因素,如不同学科的期刊数目、平均参考文献数、引证半衰期等都会对期刊的影响因子和总被引频次产生影响。
(4)检索系统因素,如参与统计的期刊来源、引文条目的统计范围等。
(5)名人效应的影响。
扩展资料
影响因子是一个杂志中文章被引用次数的总和除以这个杂志的总文章数。但这个数字是平均数,它存在的问题是,平均之后并不能反映每一篇文章的引用情况。如果一个杂志只有两篇文章,一篇文章的引用数是500,另一个文章的引用数是10,那么影响因子反映出的数字是两者的平均值255。
因此,一个有高影响因子的期刊,只能表明它拥有多篇被多次引用的论文,但并不意味着它刊载的每一篇论文都是高引用的。
资料显示,由汤森路透公司计算的期刊影响因子,最初是用来帮助图书馆员确定购买哪些期刊的,并不是测度研究论文科学质量的指标。也就是说,影响因子用于评判一个期刊是可以的,但用来评判论文,并延伸到用来评判科学家是没有借鉴意义的。
参考资料来源:百度百科—影响因子
中国新闻网-《科学》杂志副主编:影响因子不应被用于评价科学家
1999年由美国化学会第一次发行。该期刊的影响因子为(2011年),(2013年),(2019年)。OrganicLetters,中文名《有机化学通讯》,缩写.或OL,是一本同行评审的科学期刊。OL是光学领域最经典的杂志,物理类2区top(虽然影响因子只有3点几,但物理类除综述期刊外也就4个一区杂志)。貌似化材类有个杂志PCCP,的影响因子,中科院居然分在3区。nanoscale的话,影响因子6点多。ol期刊属于中端水平。
国内的期刊能到及以上就算很高的了。
影响因子:
1、影响因子(Impact Factor,IF)是汤森路透(Thomson Reuters)出品的期刊引证报告(Journal Citation Reports,JCR)中的一项数据。 即某期刊前两年发表的论文在该报告年份(JCR year)中被引用总次数除以该期刊在这两年内发表的论文总数。这是一个国际上通行的期刊评价指标。
2、影响因子现已成为国际上通用的期刊评价指标,它不仅是一种测度期刊有用性和显示度的指标,而且也是测度期刊的学术水平,乃至论文质量的重要指标。影响因子是一个相对统计量。
计算方法:
影响因子是以年为单位进行计算的。以1992年的某一期刊影响因子为例:
IF(1992年) = A / B
其中,
A = 该期刊1990年至1991年所有文章在1992年中被引用的次数;
B = 该期刊1990年至1991年所有文章数。
影响因子是什么?是万能的吗?如何客观评价影响因子呢?