北京工业大学考研研究生导师简介-康天放

本站小编 Free考研网/2019-05-27

导师姓名:康天放
性别:男
人气指数:36

所属院校:北京工业大学
所属院系:环能学院
职称:教授
导师类型:博导
招生专业:环境工程、环境科学与工程


通讯方式 :
电子邮件:kangtf@bjut.edu.cn


个人简述 :
康天放:男,博士,教授,博士生导师,现任北京工业大学环境与能源工程学院环境科学系主任。主要从事环境分析化学与环境监测的研究工作。主持了包括国家自然科学基金、北京市自然科学基金、北京市教委基金在内的多项科研项以及多项环境影响评价项目。主要研究方向包括:化学与生物传感技术及化学污染物快速检测应用研究;环境污染物的监测及环境风险评价;食品中有害物质快速检测技术研究。目前主持着北京市自然科学基金重点项目(B类)、教育部博士点基金(博导类)项目。已发表学术论文60多篇,其中有20多篇论文在国际期刊上发表,并且被美国科学引文索引SCI所收录,被他人引用350多次。

科研工作 :
近年来发表的代表性论文有(*为通讯作者): 1.· L. Wang, T.-F. Kang*, L.-P. Lu, J.-G. Zhang, R. Xue, S.-Y. Cheng, Microcystin-(leucine-arginine)immunosensor based on iron(II, III) magnetic nanoparticles. Analytical Letters, 2014, 47(18): 2939-2949. 2.· T.-F. Kang*, Y. Xiong, R. Xue, S.-Y. Cheng, Investigation of the DNA-pesticide interactions by sensitive electrochemiluminescence method. Analytical Letters, 2013,46: 1255-1266. 3.· Y. Xiong, T.-F. Kang?, L.-P. Lu, Electrochemistry of complex formation of carbaryl with ds-DNA using [Ru(bpy)2dppz]2+ as probe. Journal of Solid State Electrochemistry, 2013, 17: 129-136. 4.· R. Xue, T.-F. Kang?, L.-P. Lu, S.-Y. Cheng, Electrochemical sensor based on the graphene-Nafion matrix for sensitive determination of organophosphorus pesticides. Analytical Letters, 2013, 46: 131-141. 5.· L.-P. Lu, L.-H. Xu, T.-F. Kang, S.-Y. Cheng, Investigation of DNA damage treated with perfluorooctane sulfonate (PFOS) on ZrO2/DDAB active nano-order film. Biosensors and Bioelectronics, 2012, 35 (1): 180-185. 6.· R. Xue, T.-F. Kang?, L.-P. Lu, S.-Y. Cheng, Immobilization of acetylcholinesterase via biocompatible interface of silk fibroin for detection of organophosphate and carbamate pesticides.Applied Surface Science,2012, 258(16): 6040-6045. 7.· J. Ren, T.-F. Kang*, R. Xue, C.-N. Ge, S.-Y. Cheng, Biosensor based on a glassy carbon electrode modified with tyrosinase immmobilized on multiwalled carbon nanotubes. Microchim Acta, 2011, 174(3~4): 303-309. 8.· T.-F. Kang*, F. Wang, L.-P. Lu, Y. Zhang, T.-S. Liu, Methyl parathion sensors based on gold nanoparticles and Nafion film modified glassy carbon electrodes, Sensors and Actuators B: Chemical, 2010, 145(1): 104-109. 9.· L. P. Lu, T. F. Kang, S. Y. Cheng, X. R. Guo, An active nano-supported interface designed from gold nanoparticles embedded on ionic liquid for depositing DNA, Applied Surface Science, 2009, 256(1): 52-55. 10. T.-S. Liu, T.-F. Kang*, L.-P. Lu, et al., Au-Fe(Ⅲ) nanoparticle modified glassy carbon electrode for electrochemical nitrite sensor. Journal of Electroanalytical Chemistry, 2009, 632(1-2): 197-200. 11. Y. Zhang, T.-F. Kang*, Y.-W. Wan, et al., Gold nanoparticles-carbon nanotubes modified sensor for electrochemical determination of organophosphate pesticides. Microchim Acta, 2009, 165(3-4): 307-311. 12. Z.-L. Zhou, T.-F. Kang*, Electrochemical sensor for formaldehyde based on Pt–Pd nanoparticles and a Nafion-modified glassy carbon electrode, Microchimica Acta, 2009, 164(1-2): 133-138. 13. L. P. Lu, S. Q. Wang, T.-F. Kang, Wen Wen Xu, Synergetic effect of Pd–Fe nanoclusters: electrocatalysis of nitrite oxidation. Microchimica Acta, 2008, 162(1-2): 81-85. 14. Z.-H. Wen, T.-F. Kang*, Determination of nitrite using sensors based on nickel phthalocyanine polymer modified electrodes. Talanta,2004,62:351-355. 15. X. Chu, G.-L. Shen, J.-H. Jiang, T.-F. Kang, et al, Voltammetric studies of the interaction of daunomycin anticancer drug with DNA and analytical applications. Analytica Chimica Acta, 1998, 373: 29-38.


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