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盧楠

山東農業大學教師

講師,物理化學博士。2007年本科畢業於山東師範大學,獲得理學學士學位;2012年在山東師範大學化學化工與材料科學學院獲得理學博士學位。

個人簡介


盧楠,2012年7月進入山東農業大學化學與材料科學學院任教,主講課程有有機化學,基礎化學實驗等的教學工作。研究方向:有機催化、酶催化反應機理的理論研究,催化劑的活化模式與設計修飾等領域。

主要代表性論文


1.Nan Lu, Lin Meng, Dezhan Chen*, Guiqiu Zhang. Enantioselectivity in Organocatalytic Cascade Double Michael Addition Reaction: A Theoretical Study [J]. J. Phys. Chem. A 2012, 116(1), 670-679.
2.Nan Lu, Lin Meng, Dezhan Chen*, Guiqiu Zhang. Theoretical mechanistic study of TangPhos-catalyzed asymmetric γ addition of thiols to allenoates [J]. J. Mol. Catal. A: Chem. 2011, 339(1-2), 99-107.
3.Dezhan Chen*, Nan Lu, Guiqiu Zhang, Shizhen Mi. The mechanism of enantioselective control of organocatalyst with central and axial chiral elements [J]. Tetrahedron: Asymmetry. 2009, 20, 1365-1368.
4.Nan Lu, Lin Meng, Dezhan Chen*, Guiqiu Zhang. Enantioselectivity of aza-MBH-type reaction of nitroalkene to N-tosylimine catalyzed by thiourea-tertiary amine: a theoretical study [J]. JCST. 2012, accept.
5.Nan Lu, Dezhan Chen*, Guiqiu Zhang and Qingjian Liu. Theoretical investigation on enantioselective Biginelli reaction catalyzed by natural tartaric acid [J]. Int. J. Quantum Chem. 2011, 111(9), 2031-2038.
6.Nan Lu, Dezhan Chen*, Shizhen Mi, Guiqiu Zhang, and Honghong Zhang. The H-bond activation mechanism and enantioselectivity in stepwise conjugate amine addition promoted by hydroxyl-thiourea catalyst [J]. Int. J. Quantum Chem. 2011, 111, 4206-4213.
7.Nan Lu, Shizhen Mi, Dezhan Chen*, Guiqiu Zhang. Theoretical investigation on chiral cinchona alkaloid salts-catalyzed asymmetric epoxidation of cyclic enones [J]. Int. J. Quantum Chem. 2011, 111, 2874-2881.
8.Shizhen Mi, Dezhan Chen*, Nan Lu. DFT Study of the Structure and Property of Small Organic Hole-Transporting Molecules [J]. Int. J. Quantum Chem. 2011, 111(9), 2039-2044.
9.Shizhen Mi*, Nan Lu. Impact of substitution on the reorganization energy of bis-triarylamine derivatives [J]. THEOCHEM. 2010, 940, 1-5.
10.Honghong Zhang, Dezhan Chen*, Guiqiu Zhang, Shizhen Mi, Nan Lu. Mechanism of the aminolysis of dimethyl phenylphosphinate: A DFT study [J]. THEOCHEM. 2009, 908, 12-18.