林仲华 照片

林仲华

教授、博士生导师

所属大学: 厦门大学

所属学院: 化学化工学院

邮箱:
zhlin@xmu.edu.cn

研究领域

纳米电化学,生物大分子电化学,谱学电化学,半导体电化学,光电化学,界面电化学

近期论文

“Electrochemical Synthesis and Optical Properties of Helical Polyaniline Nanofibers”, S.-H. Weng, Z.-H. Lin, L.-X. Chen, J.-Z. Zhou, Electrochimica Acta, 2010, 55, 2727-2733

“<0001>-Preferential Growth of CdSe Nanowires on Conducting Glass: Template-Free Electrodeposition and Application in Photovoltaics”, Z.-F. Feng, Q.-B. Zhang, Z.-H. Lin, H.-H. Guo, L.-L.Lin, J.-Z. Zhou, Chemistry of Materials, 2010, 22, 2705–2710

“n-ZnO nanorods /p-CuSCN heterojunction light-emitting diodes fabricated by electrochemical method”,Q.-B. Zhang, H.-H. Guo, Z.-F. Feng, L.-L. Lin, J.-Z. Zhou and Z.-H.Lin, Electrochimica Acta, 2010, 55, 4889-4894

“Preparation of one-dimensional polyaniline-polypyrrole coaxial nanofibers and their application in gas sensor”, S.-H. Weng, J.-Z. Zhou, Z.-H. Lin, Synthetic Metals, 2010, 160, 1136-1142

“Solid-state hybrid photovoltaic cells with a novel redox polymer electrolyte and nanostructured inorganic semiconductors”, Z.-F. Feng, J.-Z. Zhou, Y.-Y. Xi, B.-B. Lan, H.-H.Guo, H.-X. Chen, Q.-B. Zhang and Z.-H. Lin, Journal of Power Sources,2009, 194, 1142-1149

“Fabrication of a PANI/Au nanocomposite modified nanoelectrode for sensitive dopamine nanosensor design”, Y. Zhang, L.-L. Lin, Z.-F. Feng, J.-Z. Zhou, and Z.-H. Lin, Electrochimica Acta,2009, 55, 265-270

“White-Light-Emitting Diode Based on ZnO Nanotubes”, H.-H. Guo, Z.-H. Lin, Z.-F. Feng, L.-L. Lin, J.-Z. Zhou, J. Phys. Chem. C, 2009, 113, 12546–12550

“Facile synthesis of SBA-15/polyaniline nanocomposites with high electrochemical activity under neutral and acidic conditions”, S.-H. Weng, Z.-H. Lin, Y. Zhang, L.-X. Chen, J.-Z. Zhou, Reactive and functional polymers,2009, 69, 130-136

“Extracellular Biosynthesis of Monodispersed Gold Nanoparticles by A SAM Capping Route”, L. Wen, Z.-H. Lin, P.-Y. Gu, J.-Z. Zhou, B.-X. Yao, G.-L. Chen,J.-K. Fu Journal of Nanoparticle Research, 2009,11, 279-288

“Monodispersed gold nanoparticles supported on γ-Al2O3 for enhanced of low-temperature catalysis oxidation of CO”, L. Wen, J.-K. Fu, P.-Y. Gu, B.-X. Yao, Z.-H. Lin, J.-Z. Zhou, Appl. Catal. B: Environmental, 2008,79,402-409

“High Sensitive Electrochemical Detection of Sequence-Specific DNA Using Low Current Voltammetry”,L.-L. Lin, J.-Z. Zhou, Y. Zhang, Z.-H. Lin, Electroanalysis, 2008,20:1798-1804

“Determination of Electrochemical Electron-Transfer Reaction Standard Rate Constants at Nanoelectrodes: Standard Rate Constants for Ferrocenylmethyltrimethylammonium(III)/(II) and Hexacyanoferrate(III)/(II)”,Y. Zhang, J.-Z. Zhou, L.-L. Lin, Z.-H. Lin*, Electroanalysis, 2008, 20,1490–1494

“ZnO nanorod light-emitting diodes fabricated by electrochemical approaches”, H.-H. Guo, J.-Z. Zhou, Z.-H. Lin, Electrochemistry Communications, 2008,10,146-150

“SERS and EQCM studies on the effect of allyl thiourea on copper dissolution and deposition in aqueous sulfuric acid”, G.-L. Chen, H.-Lin, J.-H. Lu, L. Wen, J.-Z Zhou, Z.-H. Lin, Jounral of Applied Electrochemistry. 2008, 38, 1501-1508

“Enhanced photoluminescence in core-sheath CdS-PANI coaxial nanocables:A charge transfer mechanism”, Y.-Y. Xi, J.-Z. Zhou, H.-H. Gou, C.-D. Cai, Z.-H.* Lin, Chemical Physics Letters 2005, 421, 60-64