叶能胜
近期热点
资料介绍
个人简历
教育经历\r2002.92006.1 清华大学分析化学博士学位\r1999.92002.7 首都师范大学分析化学硕士学位\r1995.91999.7 首都师范大学化学其他专业学士学位\r\r工作经历\r2019.1至今 首都师范大学化学系教授\r2010.12019.1 首都师范大学化学系副教授\r2007.32009.12 首都师范大学化学系讲师\r2006.32007.2 北京蛋白质组研究中心工程师\r\r叶能胜,博士,首都师范大学化学系教授,硕士研究生导师。北京微量元素学会副理事长;北京色谱学会理事;中国化学会高级会员。近年来主要从事分析化学相关的教学、科研工作。研究兴趣是复杂体系的分析检测方法研究,注重开发色谱新方法或样品前处理方法,侧重上述方法在生命科学、食品安全、环境监测和天然产物等领域的应用。主持完成国家自然科学基金、北京市自然科学基金和市教委科技项目;以第一作者或通讯作者身份发表科研论文80余篇;参编教材专著3部;开发虚拟仿真实验教学项目1项。先后获得中国分析测试协会科学技术奖(2010 & 2015)及北京青年优秀科技论文奖(2011 & 2013)。先后获得首都师范大学青年教师优秀教学奖(2011)、首都师范大学优秀教师奖(2017)、首都师范大学优秀教学成果奖(2016 & 2018)、北京市高等教育优秀教学成果奖(第五完成人,2017)和北京市高等学校青年教学名师奖(2018)。指导学生团队获得市级、校级学科竞赛、创新创业比赛奖项多项。研究领域
"""""色谱分析\r样品前处理技术\r生命分析化学\r天然产物分析"近期论文
2020-A graphene oxide-molybdenum disulfide composite used as stationary phase for determination of sulfonamides in open-tubular capillary electrochromatography.-Journal of Chromatography A\r\r2020-A simple and sensitive colorimetric sensor for determination of gentamicin in milk based on lysine functionalized gold nanoparticles.-Microchemical Journal\r\r2020-Determination of trace sulfonamides in environmental water and milk through capillary electrochromatography using PEG-MoS2 as stationary phase.-Food Analytical Methods\r\r2019-Ambient temperature fabrication of a covalent organic framework from 1,3,5-triformylphloroglucinol and 1,4-phenylenediamine as a coating for use in open-tubular capillary electrochromatography of drugs and amino acids.-Microchimica Acta\r\r2019-An ultrasensitive sensing of carbaryl by changing catalytic activity of AuNPs on Fehling reaction-Resonance scattering spectroscopy.-Food Analytical Methods\r\r2019-Label free aptasensor for ultrasensitive detection of tobramycin residue in pasteurized cow's milk based on resonance scattering spectra and nanogold catalytic amplification.-Food Chemistry\r\r2018-Covalent bonding of Schiff base network-1 as a stationary phase for capillary electrochromatography.-Analytica Chimica Acta\r\r2018-Open-tubular capillary electrochromatographic determination of ten sulfonamides in tap water and milk by a metal-organic framewok-coated capillary column.-Electrophoresis\r\r2018-Determination of sulfonamides in milk by capillary electrophoresis with PEG@MoS2 as a dispersive solid-phase extraction sorbent.-Royal Society Open Science\r\r2018-Fast and simple determination of moroxydine residue in pig and chicken samples by ultra-performance liquid chromatography-tandem mass spectrometry.-Food Additives and Contaminants: Part A\r\r2017-A capillary coated with a metal-organic framework for the capillary electrochromatographic determination of cephalosporins.-Microchimica Acta\r\r2017-Recent advances in metal-organic frameworks and covalent organic frameworks for sample preparation and chromatographic analysis.-Electrophoresis\r\r2017-Graphene oxide surface-molecularly imprinted polymer as dispersive solid-phase extraction adsorbent for the determination of cefadroxil in water samples.-RSC Advances\r\r2017-Molybdenum disulfide as a dispersive solid-phase extraction adsorbent for determination of sulfonamide residues in water samples using capillary electrophoresis.-ChemistrySelect\r\r2017-Determination of lysozyme by graphene oxide - polyethylene glycol based fluorescence resonance energy transfer.-Analytical Letters\r\r2016-Covalent bonding of homochiral metal-organic framework in capillaries for stereoisomer separation by capillary electrochromatography.-Electrophoresis\r\r2016-Separation of amino acid enantiomers by a capillary modified with a metal-organic framework.-RSC Advances\r\r2016-Determination of ractopamine and clenbuterol in beef by graphene oxide hollow fiber solid-phase microextraction and high-performance liquid chromatography.-Analytical Letters\r\r2016-Graphene oxide-reinforced hollow fiber solid-phase microextraction coupled with high-performance liquid chromatography for the determination of cephalosporins in milk samples.-Food Analytical Methods\r\r2015-Investigation of the adsorption mechanism and preconcentration of sulfonamides using a porphyrin-functionalized Fe3O4-graphene oxide nanocomposites.-Talanta\r\r 相关热点
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