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王建华
5.0我来评喜爱度
所在大学:东北大学
所在院系:理学院
所在地区:辽宁
所在城市:沈阳
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王建华老师介绍
王建华,男,教授,博士生导师,1985年于南开大学化学系获学士学位;1988年于吉林大学化学系获硕士学位,指导教师为徐如人院士和冯守华院士;2002年获丹麦科技大学化学系哲学博士学位,导师为流动注射分析的创始人Elo Harald Hansen教授。1997-1998年为美国特拉华大学(University of Delaware)化学与生物化学系访问学者,从事串联质谱及其分析应用的研究。
  王建华教授现为东北大学理学院院长,分析科学研究中心主任,辽宁省高校“微流控芯片与流动分析”重点实验室主任。担任Talanta副主编,英国皇家化学会Journal of Analytical Atomic Spectrometry、分析化学、分析科学学报、分析试验室、应用化工、东北大学学报等期刊编委。
  近年来的主要研究工作
  1.可更新表面微型化样品预处理平台:发展了阀上实验室微珠注射和原位表面更新技术;发展了可更新表面-微型化样品预处理平台系列;建立了介观流控-分离富集-原子荧光微型集成系统。
  2.基于在线萃取的分离富集新方法系列:发展了细胞萃取分离富集新方法,拓展了金属形态分析的新途径;揭示了疏水性表面吸附亲水性沉淀的机理;提出PTFE微珠固相萃取分离富集新体系;发展了在线多级溶剂萃取和新型反萃取方法系列。
  3.生命物质分离富集新方法系列与检测技术:建立了介观流控-DNA自动检测微集成系统;发展了介观流控-自动DNA分离-全功能集成系统;发展了绿色溶剂萃取分离核酸的新体系及作用机理,揭示了离子液体中核酸定量的光散射现象及其机理;建立了离子液体及其相关系统选择性分离富集特定蛋白质的新体系,并初步揭示了相关作用机理。
  4.原子光谱分析新技术:近年来,首次报道了基于阀上实验室的微型化原子荧光光谱分析系统;利用介质阻挡放电技术( DBD )产生的低温等离子体作为微型原子化器以及激发源,发展了微型化原子荧光光谱及原子发射光谱分析系统。
  近10年来共发表研究论文100余篇,其中SCI影响因子大于3.0的50余篇。论文的SCI引用1000余次。近5年在境外举行的国际会议上或国外大学做特邀/邀请报告10余次。王建华教授2008年被评为辽宁省优秀科技工作者,2007年获国家杰出青年科学基金、教育部自然科学一等奖、宝钢优秀教师奖;2006年获沈阳市优秀科技工作者、沈阳市优秀共产党员称号、享受政府特殊津贴;2005年获全国化工优秀科技工作者;2004年入选辽宁省“百千万人才工程”百人层次。
  代表性论文
Yu Y.-L, Du Z, Chen M.-L, Wang J.-H*.
Atmospheric-pressure dielectric-barrier discharge as a radiation source for optical emission spectrometry.
Angew. Chem. Int. Ed. 2008, 47, 7909-7912.
Chen X.-W, Zou A.-M, Chen M.-L, Wang J.-H*, Dasgupta P.K*.
Live HeLa cells preconcentrate and differentiate inorganic arsenic species.
Analytical Chemistry, 2009, 81, 1291-1296.
Wang J.-H*, Cheng D.-H, Chen X.-W, Du Z, Fang Z.-L.
Direct extraction of double stranded DNA into ionic liquid BmimPF6 and its quantification.
Analytical Chemistry, 2007, 79, 620-625.
Yang M, Xu Y, Wang J.-H*.
Lab-on-valve system integrating a chemiluminescent entity and in situ generation of nascent bromine as oxidant for chemiluminescent determination of tetracycline.
Analytical Chemistry, 2006, 78, 5900-5905.
Wang Y, Wang J.-H*, Fang, Z.-L.
Octadecyl immobilized surface for precipitate collection with a renewable microcolumn in a Lab-on-Valve coupled to an electrothermal atomic absorption spectrometer for ultratrace cadmium determination.
Analytical Chemistry, 2005, 77, 5396-5401.
Du Z, Yu Y.-L, Chen X.-W, Yan X.-R, Yu H.-M, Wang J.-H*.
The isolation of basic proteins via solid phase extraction with multiwalled carbon nanotubes.
Chemistry-A European Journal, 2007, 13, 9679-9685.
Cheng D.-H, Chen X.-W, Wang J.-H*, Fang Z.-L.
An abnormal resonance light scattering arisen from ionic liquid-DNA-ethidium interactions.
Chemistry-A European Journal, 2007, 13, 4833-4839.
Du Z, Yu Y.-L, Wang J.-H*.
The extraction of proteins from biological fluids by using an ionic liquid/aqueous two-phase system.
Chemistry-A European Journal, 2007, 13, 2130-2137.
Xu Z.-R, Zhong C.-H, Guan Y.-X, Chen X.-W, Wang J.-H*, Fang Z.-L.
A microfluidic flow injection system for DNA assay with fluids driven by an on-chip integrated pump based on capillary and evaporation effects.
Lab on a Chip, 2008, 8, 1658-1663.
Chen M.-L, Tian Y, Wang J.-H*.
Integrating preconcentration, tetrahydroborate immobilization, elution and chemical vapor generation onto a cellulose surface for the determination of cadmium with atomic fluorescence spectrometry
Journal of Analytical Atomic Spectrometry, 2008, 23, 876-880.
Yu Y.-L, Du Z, Chen M.-L, Wang J.-H*.
A miniature lab-on-valve atomic fluorescence spectrometer integrating a dielectric barrier discharge atomizer demonstrated for arsenic analysis
Journal of Analytical Atomic Spectrometry, 2008, 23, 493-499.
Zou A.-M, Chen X.-W, Chen M.-L, Wang J.-H*.
Sequential injection reductive bio-sorption of Cr(VI) on the surface of egg-shell membrane and chromium speciation with detection by electrothermal atomic absorption spectrometry
Journal of Analytical Atomic Spectrometry, 2008, 23, 412-415.
Yu Y.-L, Du Z, Wang J.-H*.
Coating of a thin layer of NaBH4 solution for mercury vapor generation coupled to atomic fluorescence spectrometry
Journal of Analytical Atomic Spectrometry, 2007, 22, 800-806.
Yu Y.-L, Du Z, Wang J.-H*.
The development of a miniature atomic fluorescence spectrometric system in a lab-on-valve for mercury determination.
Journal of Analytical Atomic Spectrometry, 2007, 22, 650-656.
Zou A.-M, Chen M.-L, Shu Y, Yang M, Wang J.-H*.
Biological cell-sorption for separation/preconcentration of ultra-trace cadmium in a sequential injection system with detection by electrothermal atomic absorption spectrometry.
Journal of Analytical Atomic Spectrometry, 2007, 22, 392-398.
Wang Y, Chen M.-L, Wang J.-H*.
Sequential/bead injection lab-on-valve incorporating a renewable microcolumn for co-precipitate preconcentration of cadmium coupled to hydride generation atomic fluorescence spectrometry.
Journal of Analytical Atomic Spectrometry, 2006, 21 (5), 535-538.
Wang J.-H*, Yu Y.-L, Du Z, Fang Z.-L.
A low cost and sensitive procedure for lead screening in human whole blood with sequential injection-hydride generation atomic fluorescence spectrometry.
Journal of Analytical Atomic Spectrometry, 2004, 19, 1559-1563.
Wang J.-H, Hansen E.H.
Trends and perspectives of flow injection/sequential injection on-line sample pretreatment schemes coupled to ETAAS.
TrAC-Trends in Analytical Chemistry, 2005, 24, 1-8.
Wang J.-H, Hansen E.H.
On-line sample pretreatment schemes for trace determination of metals by coupling flow injection or sequential injection with ICPMS.
TrAC-Trends in Analytical Chemistry, 2003, 22, 836-846.
Wang J.-H, Hansen E.H.
Sequential injection lab-on-valve: the third generation of flow injection analysis.
TrAC-Trends in Analytical Chemistry, 2003, 22, 225-231.
Du Z, Yu Y.-L, Yan X.-R, Wang J.-H*.
Isolation and preconcentration of basic proteins in aqueous mixture via solid-phase extraction with multi-walled carbon nanotubes assembled on silica surface.
Analyst, 2008, 133, 1373-1379.
Wan Z, Xu Z.-R, Wang J.-H*.
Flow injection on line solid phase extraction for ultratrace lead screening with hydride generation atomic fluorescence spectrometry.
Analyst, 2006, 131, 141-147.
Chen X.-W, Wang W.-X, Wang J.-H*.
A DNA assay protocol in a lab-on-valve meso-fluidic system with detection by laser-induced fluorescence.
Analyst, 2005, 130, 1240-1244.
Chen X.-W, Xu Z.R, Qu B.-Y, Wu Y.F, Zhou J, Zhang H.-D, Fang J, Wang J.-H*.
DNA purification on a lab-on-valve system incorporating a renewable microcolumn with in situ monitoring by laser-induced fluorescence.
Analytical and Bioanalytical Chemistry, 2007, 388, 157-163.
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