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个人简介

刘永东,女,教授。2005年8月至今于北京工业大学生命科学与生物工程学院工作。2007-2008年先后入选北京市优秀人才和北京市科技新星计划。2012年入选北京市青年拔尖人才培养计划。2011年获得第七届北京青年教师教学基本功比赛二等奖。2013年获得北京工业大学优秀青年主讲教师奖。 二、教育情况 2003. 7 ~ 2005.6 加拿大Alberta大学化学系,博士后研究,合作导师:Pierre-Nicholas Roy教授 2000.3 ~2003.3 北京理工大学理学院化学系,博士,导师:李前树教授 1997.9 ~2000.6 辽宁师范大学化学系,硕士,导师:孙仁安教授 1993.9 ~1997.6 辽宁师范大学化学系,学士

研究领域

1. 致癌性化学物质形成机制及抑制方法的研究; 2. 化学物质致癌机理的研究; 3. 药物及生物毒性分子作用机理的研究。

近期论文

查看导师新发文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

1.Liu Y. D.*,Zhong R. G. Comparison of N-nitrosodimethylamine Formation Mechanisms fromdimethylamine during Chloramination and Ozonation: A Computational Study. J. Hazard. Mater. 321, 362-370 (2017) 2.LiuY. M, Liu Y. D.*, Zhong R. G., PengB., Schaefer H. F. III. Effects of heavy metal ions on N-nitrosodimethylamine(NDMA) formation. RSC adv. 670474-70479 (2016) 3.LiuY., Wang S., Sun D., Liu Y. D., LiuY., Wang Y., Liu C., Wu H., Lv Y., Ren Y., Guo X., Sun G., Ma X. Development ofa Biomimetic Chondroitin Sulfate-modified Hydrogel to Enhance the Metastasis ofTumor Cells. Sci. Rep. 6, 29858 (2016) 4.Zhang O.,Zou X., Li Q. H., Sun Z., LiuY. D.*, Zhong R. G. Experimental and theoretical Investigation of Effects of Ethanol and AceticAcid on Carcinogenic NDMA Formation in Simulated Gastric Fluid.J. Phys. Chem. A 120, 4505-4513 (2016) 5.LiuY. M, Schaefer H. F. III, Xie Y. M., LiuY. D.*, Zhong R.G. 1,1-Dilithioethylene: Toward SpectroscopicIdentification of the Definitive Singlet Ground Electronic State of PeculiarStructure. ChemPhysChem. 17(11)1623-1629 (2016) 6.Zhang T. T., Liu Y. D.*, ZhongR. G. Iron(II) Porphyrins induced Conversion of Nitrite into Nitric Oxide:A Computational Study. J. Inorg. Biochem.150, 126-132 (2015) 7.SunZ., Schaefer H. F. III, Xie Y. M, Liu Y.D.*, Zhong R. G. Prototypicalmetal-oxo bonds: The reactions of Cr(PF3)6, Fe(PF3)5,and Ni(PF3)4 with oxygen.Theor. Chem. Acc.134(1), 1-12 (2015) 8.Liu Y. D.*, Selbes M., Zeng C.C., Zhong R.G, Karanfil, T. FormationMechanism of NDMA from Ranitidine, TMA and Other Tertiary Amines duringChloramination: A Computational Study. Environ.Sci. & Technol. 48(15), 8653-8663 (2014) 9.SunZ., Schaefer H. F. III, Xie Y. M, Liu Y.D.*, Zhong R. G. The Reactions of Cr(CO)6,Fe(CO)5, and Ni(CO)4 with O2 Yield ViableOxo-Metal Carbonyls. J. Comput. Chem.35(13), 998-1009 (2014) 10.Gao X. G, Zhang, N. T., Zeng C. C*, LiuY. D., Hu L. M., Tian H. Y. ElectrochemicalSynthesis of Polyfunctionalized Indoles in Aqueous Medium from Catechols andKetene N,S-acetals. Current Organic Synthesis. 11(1), 141-148 (2014) 11.Liu Y. D.*,Selbes M., Zeng C.C., Zhong R.G., Karanfil, T. Formation Mechanism of NDMA fromRanitidine, TMA and Other Tertiary Amines during Chloramination: AComputational Study. 248th National Meeting of the American-Chemical-Society(ACS) (2014) 12.SunZ., Schaefer H. F. III, Xie Y. M, Liu Y.D.*, Zhong R. G. Does the metal–metal sextuple bond exist in the bimetallicsandwich compounds Cr2(C6H6)2, Mo2(C6H6)2,and W2(C6H6)2? Mol. Phys. 111(16-17), 2523-2535 (2013) 13.KorinE., Cohen B., Liu Y. D., ZENG C.-C.,Shames A., Becker J. Y. Examining the binding mechanism of3,4-dihydro-3-(2-oxo-2- phenylethylidene)-quinoxalin-2(1H)-one and itsfragments to Cu2+. J. Coord.Chem. 66(13), 2351-2366(2013) 14.Sun Z., Liu Y. D.*, ZhongR.G. Reactions of Amine and Peroxynitrite:Evidence for Hydroxylation as Predominant Reaction and New Insight into theModulation of CO2. J.Phys. Chem. A 116(30), 8058-8066 (2012) 15.Sun Z., Liu Y. D.*, ZhongR.G. Carbon Dioxide in the Nitrosationof Amine: Catalyst or Inhibitor? J.Phys. Chem. A 115(26), 7753-7764 (2011) 16.Sun Z., Liu Y. D.*, ZhongR.G. Theoretical Investigation of Reactivities of Amines in the N-nitrosation Reactions by N2O3.J. Mol. Model. 17(4), 669-680 (2011) 17.ZhaoJ., Sun Z., Liu Y. D.*, ZhongR.G. Theoretical investigation of the isomerization and dissociation reactionsof all the HOONO2 isomers. J.Mol. Struc.(THEOCHEM) 959,42-48 (2010) 18.LiH., Liu Y. D., Jäger W., Roy R. J.L., Roy, P. N. Theoretical study of the microwave spectrum ofisotopologues ofOCS–(He)2. Can.J. Chem. 88, 1146-1153 (2010) 19.LiuY. D.* and Zhong R. G. Comparison of Mechanisms ofN-Nitrosation and N-Nitration of Ammonia and Dimethylamine by Reactive NitrogenOxygen Species: A Theoretical Study. Chin.J. Struct. Chem. 29(3), 421-431 (2010) 20.Sun Z., Liu Y. D.*, ZhongR. G. Theoretical Investigation of N- Nitrosodimethylamine Formation fromNitrosation of Trimethylamine. J. Phys.Chem. A 114, 455-465 (2010)

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