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悠然逸轩

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langmuir的审稿周期是3个月。

Langmuir (朗缪尔)是美国化学学会出版的期刊之一,创刊于1985年,其名来源于1932年诺贝尔化学奖得主欧文·朗缪尔的姓氏。现在的主编是加拿大多伦多大学化学系的教授Prof. Gilbert C. Walker,主要发表表面化学和胶体化学领域的论文。

2018年的影响因子为3.683,JCR分区为化学大类2区Top,小类分区为3区(物理化学,材料科学),最近几年的年发文量为1700篇左右。Langmuir为标准同行评审的非开源期刊,出版周期为半月,审稿周期为2~3月,投稿命中率为45%。

研究成果

Langmuir吸附理论作为电影的一个分子厚的水面后面向与亲水端(也许是酒精或酸)的脂肪链组成的油,亲水基团与水和疏水链成群一起上表面。从已知的体积和面积的油,这使得光谱技术的分子结构进行调查之前,可以很容易地确定薄膜厚度。

当他继续研究在真空和不同的气体环境中的细丝,他开始学习热丝(带电粒子发射热电子发射)。他是第一工作的科学家之一等离子体是第一次调用这些电离气体,该名称,因为他们提醒他的血浆。Langmuir和唐克斯发现,现在被称为等离子体电子密度波的朗缪尔波。

263 评论

魔都魔都

1. L. Su, F. Gao, L. Mao*Electrochemical Properties of Carbon Nanotube (CNT) Film Electrodes Prepared by Controllable Adsorption of CNTs onto Alkanethiol Monolayer Self-Assembled on Gold Electrodes.Anal. Chem. 2006, 78, 2651-2657.2. L. Su, L. Mao*Gold Nanoparticle/Alkanedithiol Conductive Films Self-Assembled onto Gold Electrode: Electrochemistry and Electroanalytical Application for Voltammetric Determination of Trace Amount of Catechol.Talanta in press.3. W. Zheng, Q. Li, L. Su, Y. Yan, L. Mao*Direct Electrochemistry of Multi-Copper Oxidases at Carbon Nanotubes Noncovalently Functionalized with Cellulose Derivatives.Electroanalysis 2006, 6, 587-594.4. M. Zhang, L. Su, L. Mao*A Strategy through Supramolecular surfactant functionalization of Carbon Nanotubes for Layer-by-Layer Assembly of CNT Multilayer Film and Fabrication of Gold Nanoparticle CNT Hybrid.Carbon 2006, 44, 276-283.5. K. Gong, X. Zhu, R. Zhao, S. Xiong, L. Mao,* C. Chen*.Rational Attachment of Synthetic Triptycene Orthoquinone onto Carbon Nanotubes for Electrocatalysis and Sensitive Detection of Thiols.Anal. Chem. 2005, 77, 8158 - 8165.6. M. Zhang, K. Liu, K. Gong, L. Su, Y. Chen, L. Mao*.Continuous On-line Monitoring of Extracellular Ascorbate Depletion in the Rat Striatum Induced by Global Ischemia with Carbon Nanotube-Modified Glassy Carbon Electrode Integrated into A Thin-Layer Radial Flow Cell.Anal. Chem. 2005, 77, 6234 - 6242.7. Y. Yan, M. Zhang, K. Gong, L. Su, Z. Guo, L. Mao*.Adsorption of Methylene Blue Dye onto Carbon Nanotubes: A Route to Electrochemically Functional Nanostructure and Its Layer-by-Layer Assembled Nanocomposite.Chem. Mater. 2005, 17, 3457-3463.8. P. Yu, Y. Lin, L. Xiang, L. Su, J. Zhang, L. Mao*.Molecular Films of Water-Miscible Ionic Liquids Formed onto Glassy Carbon Electrode: Characterization and Electrochemical Applications.Langmuir 2005, 21, 9000-9006.9. Y. Yan, W. Zheng, M. Zhang, L. Wang, L. Su, L. Mao*Bioelectrochemically Functional Nanohybrids through Co-assembling of Proteins and Surfactants onto Carbon Nanotubes: Facilitated Electron Transfer of Assembled Proteins with Enhanced Faradic Response.Langmuir 2005, 21, 6560-6566.10. M. Zhang, L. Mao*.Enzyme-Based Amperometric Biosensors for Continuous and On-line Monitoring of Cerebral Extracellular Microdialysate (A Review).Frontier in Bioscience 2005, 10, 345-352.11. K. Gong, Y. Yan, M. Zhang, L. Su, L. Mao*.Electrochemistry and Electroanalytical Applications of Carbon Nanotubes: A Review.Anal. Sci. 2005, 21, 1383-1393.12. M. Zhang, K. Gong, H. Zhang, L. MaoElectrostatic Layer-by-Layer Assembled Carbon Nanotubes for Selective Determination of Dopamine in The Presence of Ascorbic Acid.Biosens. Bioelectron. 2005, 20, 1270-1276.13. K. Gong, M. Zhang, Y. Yan, L. Su, L. Mao,* S. Xiong, Y. Chen.Sol-Gel-Derived Ceramic-Carbon Nanotube Nanocomposite Electrodes: Tunable Electrode Dimension and Potential Electrochemical Applications.Anal. Chem. 2004, 76, 6500-6505.14. M. Zhang, Y. Yan, K. Gong, L. Mao,* Z. Guo, Y. Chen.Electrostatic Layer-by-Layer Assembling of Carbon Nanotube Multilayer Film and Its Electro-Catalytic Activity for O2 reduction.Langmuir 2004, 20, 8781-8785.15. K. Gong, Y. Dong, S. Xiong, Y. Chen, L. MaoNovel Electrochemical Method for Sensitive Determination of Homocysteine with Carbon Nanotube-Based Electrodes.Biosens. Bioelectron. 2004, 20 253-259.

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