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聶長明

(南華大學教授)

鎖定
聶長明,男,1961年生,湖南衡山人,工學博士,南華大學二級教授,博士生導師。2009-2010年法國圖盧茲三大法國國家科學研究中心配合物研究所訪問學者,2005-2006年日本早稻田大學理工研究院訪問學者。中國核學會錒系化學會理事,第九屆、第十屆湖南省化學化工學會副理事長。2008年獲湖南省優秀博士學位論文獎,2008年獲全國百篇優秀博士學位論文提名獎。 [1] 
中文名
聶長明
國    籍
中國
民    族
出生地
湖南衡陽
出生日期
1961年1月
學位/學歷
博士
專業方向
化學
職    稱
教授 [1] 

聶長明人物經歷

2000年至2012年任南華大學化學化工學院院長;
2013年至2017年任南華大學化學化工學院黨委書記。 [2] 

聶長明研究方向

功能材料及分子識別與分離 [1] 

聶長明主要成就

近年來主持完成國家自然科學基金面上項目、科技部國際合作重點項目、湖南省自然科學基金、湖南省自然科學省市聯合基金、湖南省科技廳科技計劃項目、湖南省發改委、湖南省教育廳重點等科研課題12項。獲湖南省自然科學二等獎1項、湖南省自然科學三等獎1項、湖南省科技進步三等獎1項、衡陽市科技進步二等獎1項。在國內外學術期刊發表學術論文130餘篇,其中被SCI收錄90餘篇,EI收錄10篇。其中有多篇被“Chemical Review” 期刊論文引用。
主持完成全國專業學位研究生教學指委教改課題1項、湖南省十二規劃教改課題1項、湖南省學位與研究生教改重點課題1項、湖南省教育廳教研課題1項。獲湖南省教學改革發展優秀成果一等獎1項、湖南省教學成果二等獎1項、湖南省教學成果三等獎2項、南華大學教學成果一等獎4項。主編國防科工委“十二五”規劃研究生教材《計算化學》(北京理工大學出版社),主編《物理化學實驗》本科生教材(吉林科學技術出版社)。副主編《物理化學》第3版和第4版(人民衞生出版社),副主編普通高等學校“十四五”規劃工科教材《有機化學》第3版(華中科技大學出版社)。參編“十三五”國家規劃教材《有機化學》(人民衞生出版社)、“十三五”國家規劃教材《有機化學實驗》(人民衞生出版社)及“十三五”國家規劃教材《有機化學習指導與習題集》(人民衞生出版社)。近年來指導的研究生獲湖南省優秀碩士學位論文4人,獲湖南省研究生創新論壇優秀論文一等獎4篇。主講《高等有機化學》、《計算化學》、《有機化學》、《物理化學》等課程。 [1] 

聶長明獲獎記錄

獲湖南省自然科學二等獎1項、湖南省自然科學三等獎1項、湖南省科技進步三等獎1項、衡陽市科技進步二等獎1項。獲湖南省教學改革發展優秀成果一等獎1項、湖南省教學成果二等獎1項、湖南省教學成果三等獎2項、南華大學教學成果一等獎4項。 [1] 

聶長明代表性論文

[1] Dai SH, Wang N, Qi CJ, Wang XX, Ma Y, Yang L, Liu XY, Huang Q, Nie CM(聶長明), Hu BW*, Wang XK*, Preparation of core-shell structure Fe3O4@C@MnO2 nanoparticles for efficient elimination of U(VI) and Eu(III) ions, Sci. Total Environ., 2019, 685: 986-996.(SCI, JCR 一區)
[2] Guo WL, Nie CM*(聶長明), Wang L, Li ZJ, Zhu L, Zhu LZ, Zhu ZT,Shi WQ, Yuan LY*, Easily prepared and stable functionalized magnetic ordered mesoporous silica for efficient uranium extraction, Sci. China-Chem., 2016, 59(5): 629-636. (SCI, JCR 一區)
[3] Luo L, Wang CH, Lan JH, Wu QY, Zhao YL, Chai ZF, Nie CM*(聶長明), Shi WQ*, Theoretical studies on the complexation of Eu(III) and Am(III) with HDEHP: structure, bonding nature and stability, Sci. China Chem., 2016, 59(3): 324-331. (SCI, JCR 一區)
[4] Chen YM, Wang CZ, Wu QY, Lan JH, Chai ZF, Nie CM*(聶長明), Shi WQ*, Theoretical insights into modifification of nitrogen-donor ligands to improve performance on Am(III)/Eu(III) separation, Inorg. Chem., 2020, 59: 3221-3231. (SCI, JCR 一區)
[5] Kong XH, Hu KQ, Wu QY, Mei L, Yu JP, Chai ZF, Nie CM*(聶長明), Shi WQ*, In situ nitroso formation induced structural diversity of uranyl coordination polymers, Inorg. Chem. Front.,2019, 6(3): 775-785.(SCI, JCR 一區)
[6] Kong XH, Wu QY, Zhang XR, Wang C, Hu KQ, Chai ZF, Nie CM*(聶長明), Shi WQ*, Coordination behavior of uranyl with PDAM derivatives in solution: Combined study with ESI-MS and DFT, J. Mol. Liq., 2020, 300, 112287(SCI, JCR 一區)
[7] Sun WZ, Dai LL, Kong XH, Mao Y, Wu ZL, Liao LF, Xiao XL, Nie CM*(聶長明), Theoretical investigation into coordination and selectivity of uranyl-unilateral benzotriazole salophens (X=O/S) for R/S-triadimefons, Appl. Organomet. Chem., 2020, 34: e5486. (SCI, JCR 一區)
[8] Wang C, Wu QY, Wang CZ,Lan JK, Nie CM*(聶長明), Chai ZF, Shi WQ*, Theoretical insights into selective separation of trivalent actinide and lanthanide by ester and amide ligands based on phenanthroline skeleton, Dalton Trans., 2020, 49: 4093-4099.(SCI, JCR 一區)
[9] Yang LL, Kong XH, Wu ZL, Lin YW, Liao LF, Nie CM*(聶長明), Theoretical investigation into the coordination of R/S-asymmetric uranyl-salophens containing six-membered ring lactam with cis/trans- cyclohexylamines, Appl. Organomet. Chem., 2018; 32(7): e4387.(SCI, JCR 一區)
[10] Lan WB, Wang XF, He LP, Meng YB, Li J, Qiu B, Nie CM*(聶長明), Computational insight into asymmetric uranyl-salophen coordinated with α, β-unsaturated aldehydes and ketones, Appl. Organomet. Chem., 2018, 32(3): e4137.(SCI, JCR 一區)
[11] Long LY, Tao P, Li TL, Wu S, Kong XH, Liao LF, Xiao XL, Nie CM*(聶長明), Insight into Coordination of Uranyl Ions with N,N′-bis(2-five-membered heterocyclidene)-1,8-anthradiamines, Appl. Organomet. Chem., 2019, 33(5):e4931. (SCI, JCR 一區)
[12]Yang R, Xiao Y, Tao XB, Ma MJ, Wu ZL, Liao LF, Xiao XL, Nie CM*(聶長明*), Insights into complexation and enantioselectivity of uranyl-2-(2-hydroxy-3- methoxyphenyl)-9-(2-hydroxyphenyl) thiopyrano[3,2-h]thiochro-mene-4,7-dione with R/S-organophosphorus pesticides, Appl. Organomet. Chem, 2021,35(9): e6331.(SCI, JCR一區).
[13] Liu LF, Lu Y, Liao LF, Xiao XL, Nie CM*(聶長明*), Theoretical unraveling the complexation and separation of uranyl-ligand complexes towards chiral R/S-profenofos, Appl. Organomet. Chem, 2022, 36(6): e6686. (SCI, JCR一區).
[14] Tao XB,Yang R,Xiao Y, Liao LF, Xiao XL, Nie CM*(聶長明*), Complexation and enantioselectivity of novel bridge-like uranyl-2-((1Z,9Z)-9- (2-Hydroxyphenyl)-3,5,6,8-tetrahydr-obenzo[h][1,4,7,10]dioxadiazacyclododecin-2-yl)-5-methoxyphenol with chiral organophosphorus pesticide enantiomers of R/S-malathions, Environ. Techn., 2022, 43(22): 3378-3389. (SCI, JCR一區).
[15]Lu Y, XiaoY, Liu LF, Xiao XL, Liao LF, Nie CM*(聶長明*), Theoretical probing into complexation of Si5LIO1Cm3,2HOPO with Uranyl, Theoret. Chem.Acc., 2022, 141(11): 59. (SCI, JCR三區).
[16] Xiao Y, Nie CM*(聶長明*), Xiao XL, Liao LF, Yang R, Tao XB, Mao Y*, Theoretical insights into chiral PMAADs coordinated with Am(III)/Eu(III) and separation selectivity enhanced by chiral-at-Am(III)/Eu(III) complexes, J. Radioanaly. Nucl. Chem., 2021, 328(1): 205-216. (SCI, JCR二區).
[17]Ma MJ, Xiao CM, Xiao XL, Liao LF, Nie CM*(聶長明*), Probing into complexation and separation of chiral-at-uranium complex to chiral sulfur enantiomers R/S-ethiproles, Appl. Organomet. Chem., 2023,36: e6999.(SCI, JCR一區).
[18] Lei XP, Wu QY,* Wang CZ, Lan JH, Chai ZF, Nie CM*(聶長明*), Shi WQ*, Theoretical insights into the substitution effect of phenanthroline derivatives on Am(III)/Eu(III) separation, Inorg. Chem. 2023, 62, 2705−2714. (SCI, JCR一區).
[19]Wu S, Mei L, Hu KQ, Chai ZF, Nie CM*(聶長明*), Shi WQ*, pH-dependent Synthesis of Octa-nuclear Uranyl-oxalate Network Mediated by U-shaped Linkers, J. Inorg. Mater., 2020, 35(2): 243-249. (SCI, JCR三區).
[20]Wang J, Wang CZ,* Wu QY, Lan JH, Chai ZF, Nie CM*(聶長明*), Shi WQ*, Construction of the largest metal-centered double-ring tubular boron clusters based on actinide metal doping, J. Phys. Chem. A, 2022, 126(22):3445-3451.(SCI, JCR二區).
[21] Lan WB, Wang XF*, Kong XH, Nie CM*(聶長明*), In-depth study of the heme-binding ability to five heavy metals: Hg,Cd,Pb,Cr, and As, Appl. Organomet. Chem, 2022, 36: e6818. (SCI, JCR一區). [1] 
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