首页 > 师资队伍 > 教职工队伍 > 正文



Prof. Li-Ming Yuan

Li-Ming Yuan was born in Chongqing, China, 1961. He received his Ph.D. from Beijing Institute of Technology (1997, China) and then spent about two years (2002-2004) at the Nagoya University (Japan) as a postdoctoral fellow (JSPS) with Prof. Y. Okamoto. In 1998 he was promoted to professor in Yunnan Normal University of China. His current research interests focus on the enantioseparations by chromatography, polymeric membrane and extraction.

简介——袁黎明,男,1961出生,重庆云阳人。82年毕业于重庆三峡学院,88年于云南大学获硕士学位,97年于北京理工大学获博士学位,02-04年于日本名古屋大学作博士后研究(JSPS)。92年任云南师范大学化学系副主任、99年任主任、2000年将系建设成化学化工学院后任首任院长。现为云南省二级岗位教授,云南省高等学校“生化分离分析”重点实验室主任,云南师范大学化学化工学院党委书记,华东师范大学分析化学专业博士研究生导师。

科研及教学——合成新型的手性识别材料,开展手性化合物的色谱、膜、萃取等分离分析新技术研究。承担研究生的《分离科学》、本科生的《分析化学》《高分子化学》《药物化学》的教学。

主要学术活动——袁黎明教授现为《Journal of Separation Science》(2013.9.—)、《色谱》(2015.1.—)、《膜科学与技术》(2012.8.—)、《化学教育》(2000.4.—)、《冶金分析》(2000.1.—2010.12.)杂志编委,云南省教育学会化学教学专业委员会理事长(2011.8.—)。到目前为止,其已300多次应邀为J. Am. Chem. Soc.、Anal. Chem.、J. Membr. Sci.等20多个国际英文期刊以及10余个国内核心期刊评审稿件。已负责主持国家自然科学基金委科学仪器基础研究项目以及面上和地区项目、科技部973专项课题、教育部重点课题、云南省重点课题十余项,其余的项目十余项。

主要学术成果——袁黎明教授团队发表学术论文230余篇,其中以第一作者和单一通讯作者发表包括J. Am. Chem. Soc. (IF=13.8)、Chem. Commun. (IF=6.7)、Anal. Chem. (IF=6.3)、J. Membr. Sci. (IF=5.5)等在内的SCI源期刊论文100余篇。独撰《手性识别材料》(科学出版社, 2010.)、《制备色谱技术及应用》(第二版)(化学工业出版社, 2012.)和合撰《色谱手性分离技术及应用》(袁黎明,刘虎威)(化学工业出版社, 出版中)3本学术著作,以第一申请人已申请和授权发明专利10余项。云南省98年破格正教授,曾获教育部第三届“高校青年教师奖”、云南省自然科学二等奖(第一完成人)、云南省有突出贡献的优秀专业技术人才、云南省中青年学术技术带头人、享受国务院政府特殊津贴等奖励或称号。

 

Correspondence (通信):Department of Chemistry, Yunnan Normal University, Chenggong District, Kunming 650500, P.R. China (昆明市呈贡区云南师范大学化学化工学院, 昆明650500)

E-mail (电子邮件):yuan_limingpd@126.com

Tel(O) (电话):86-871-65941088

Web (网页):http://hgxy.ynnu.edu.cn/view.aspx?ID=46

 

SELECTED PUBLICATIONS (2005-present, Mar. 1, 2017 updated)

1 Jun-Hui Zhang, Rui-Yu Nong, Bang-jin Wang, Ping Ai, Sheng-Ming Xie, Li-Ming Yuan*. Homochiral metal-organic frameworks based on amino acid ligands for HPLC separation of enantiomers. Electrophoresis, accepted.

2 Peng Wu, Yu-Ping Wu, Jun-Hui Zhang, Zhen-Yu Lu, Mei Zhang, Xue-Xian Chen, Li-Ming Yuan*. Chromatographic resolution of α-amino acids by (R)-(3,3'-halogen substituted-1,1'-binaphthyl)-20-crown-6 stationary phase in HPLC. Chin. J. Chem., published.

3 LI-MING YUAN*, WEI MA, MEI XU, HUI-LIN ZHAO, YUAN-YUAN LI, RUI-LIN WANG, AI-HONG, DUAN, PING AI, XUE-XIAN CHEN. Optical Resolution and Mechanism Using Enantioselective Membranes of Cellulose, Sodium Alginate and Hydroxypropyl-β-cyclodextrin. Chirality, 2017, 29: 315-324.

4 Ai-Hong Duan, Bang-Jin Wang, Sheng-Ming Xie, Jun-Hui Zhang, Li-Ming Yuan*. A chiral, porous, organic cage-based, enantioselective potentiometric sensor for 2-aminobutanol. Chirality, 2017, 29: 172-177.

5 Li Lang, Xie Sheng-Ming, Zhang Jun-Hui, Chen Ling, Zhu Peng-Jing and Yuan Li-Ming*. Homochiral Metal-Petide Framework Material with Ladder-Building Unit for Chromatographic Separation in GC. Chem. Res. in Chinese Universities, 2017, 33: 24-30.

6 Xie S.M., Yuan L.M.* Recent progress of chiral stationary phases for separation of enantiomers in gas chromatograp. J. Sep. Sci., 2017, 40: 124-137.

7 Hu C., Li L., Yang L., Zhang Z.H., Xie S.M.*, Yuan L.M.* Chiral metal–organic framework for the enantioseparation by HPLC. Acta Chimica Sinica, 2016, 74: 819-824.

8 Shengming Xie, Junhui Zhang, Nan Fu, Bangjin Wang, Cong Hu and Liming Yuan*. Application of Homochiral Alkylated Organic Cages as Chiral Stationary Phases for Molecular Separations by Capillary Gas Chromatography. Molecules 2016, 21, 1466-1477.

9 Bo Tang, Jun-Hui Zhang, Min Zi, Xue-Xian Chen, and Li-Ming Yuan*. Solid-phase extraction with metal–organic framework for the analysis of chiral compounds. Chirality, 2016, 28: 778-783.

10 YUAN Liming*, SU Yingqiu, DUAN Aihong, ZHENG Ying, AI Ping, CHEN Xuexian. Study on optical resolution of D,L-phenylglycine and chiral separation mechanism using an enantioselective membrane of vancomycin. CHEMICAL JOURNAL OF CHINESE UNIVERSITIES, 2016, 37(11): 1960-1965.

11 Jiang-rong Yang, Sheng-ming Xie, Hong Liu, Jun-hui Zhang, Li-ming Yuan*. Metal–organic Framework [Cd(LTP)2]n for Improved Enantioseparations on A Chiral Cyclodextrin Stationary Phase in GC. J. Chromatogr. Sci., 2016, 54(9): 1467-1474.

12 Mei Zhang, Xinglian Chen, Junhui Zhang, Jiao Kong and Liming Yuan.* A 3D Homochiral MOF [Cd2(d-cam)3]?2Hdma?4dma for HPLC Chromatographic Enantioseparation. Chirality, 2016, 28(4): 340–346

13 NONG Ruiyu, KONG Jiao, ZHANG Junhui, CHEN Ling, TANG Bo, XIE Shengming, YUAN Liming*. Chiral Metal-organic Framework {[Co(L-trp)(bpe)(H2O)]?H2O?NO3}n Used for High Performance Liquid Chromatographic Separation. CHEMICAL JOURNAL OF CHINESE UNIVERSITIES, 2016, 37(1): 19-25

14 Sheng-Ming Xie, Jun-Hui Zhang, Nan Fu, Bang-Jin Wang, Ling Chen, Li-Ming Yuan*. A chiral porous organic cage for molecular recognition using gas Chromatography. Analytica Chimica Acta, 2016, 903: 156-163

15 Jun-Hui Zhang, Sheng-Ming Xie, Bang-Jin Wang, Pin-Gang He, Li-Ming Yuan*. Highly selective separation of enantiomers using a chiral porousorganic cage. J. Chromatogr. A, 2015, 1426: 174-182.

16 Jun-Hui Zhang, Sheng-Ming Xie, Ling Chen, Bang-Jin Wang, Pin-Gang He, and Li-Ming Yuan*. Homochiral Porous Organic Cage with High Selectivity for the Separation of Racemates in Gas Chromatography. Anal. Chem., 2015, 87: 7817-7824.

17 Xue-Xian Chen, Li-Ming Yuan*. Colorimetric Enantiodiscrimination of Mandelic Acid by Indicatordisplacement Assay. Chin. Chem. Lett., 2015, 26: 1019-1021.

18 Lu Zhenyu, Wu Peng, Zi Min, Yang Canyu, Kong jiao, Yuan Liming*. Synthesis and Evaluation of Crown Ether Chiral Stationary Phase. Chinese Journal of Organic Chemistry, 2015, 35: 217-222.

19 Xiao Lian, Xue-Xian Chen, Min Zi, Li-Ming Yuan. Direct TLC Optical Resolution of Two Sulphur-containing DL-α-Amino Acids Using Vancomycin as Chiral Selector. Asian Journal of Chemistry, 2015, 27(9): 3370-3372.

20 Jun-Hui Zhang, Mei Zhang, Pin-Gang He, and Li-Ming Yuan*. Novel Inorganic Mesoporous Material with Chiral Nematic Structure Derived from Nanocrystalline Cellulose for HPLC Separations. Anal. Method, 2015,  7(9): 3772-3778

21 X.D. XUE, M. ZHANG, S.M. XIE, AND L.M. YUAN.* Homochiral Metal-Organic Framework [Zn2(D-Cam)2(4,4′-bpy)]n for High-Resolution Gas Chromatographic Separations. Acta Chromatographica, 2015, 27: 15-26.

22 Xiao Lian, Xue-Xian Chen, Min Zi, Li-Ming Yuan. Direct TLC Enantioseparation of Three aromatic DL-Amino Acids Using Vancomycin as a Chiral Selector. Journal of Planar Chromatography - Modern TLC, 2015, 28(3): 248–250.

23 Jiao Kong, Mei Zhang, Ai-Hong Duan, Jun-Hui Zhang, Rui Yang, Li-Ming Yuan*. A homochiral metal–organic framework [Co2(D-cam)2(TMDPy)] used as stationary phase for high-performance liquid chromatography. J. Sep. Sci., 2015, 38, 556–561.

24 Jiang-rong Yang, Sheng-ming Xie, Hong Liu, Jun-hui Zhang, Li-ming Yuan*. Metal–organic Framework InH(D-C10H14O4)2 for Improved Enantioseparations on A Chiral Cyclodextrin Stationary Phase in GC. Chromatographia, 2015, 78: 557–564.

25 Jun-Hui Zhang, Sheng-Ming Xie, Mei Zhang, Min Zi, Pin-Gang He, and Li-Ming Yuan*. Novel Inorganic Mesoporous Material with Chiral Nematic Structure Derived from Nanocrystalline Cellulose for High-Resolution Gas Chromatographic Separations. Anal. Chem., 2014, 86: 9595-9602.

26 Zhi-Xin Fei, Mei Zhang, Sheng-Ming Xie and Li-Ming Yuan*. Capillary electrochromatographic fast enantioseparation based on a chiral metal–organic framework. Electrophoresis, 2014, 35, 3541–3548.

27 Sheng-ming Xie ? Xin-huan Zhang ? Bang-jin Wang ? Mei Zhang ? Jun-hui Zhang ? Li-ming Yuan*. 3D Chiral Nanoporous Metal–Organic Framework for Chromatographic Separation in GC. Chromatographia, 2014, 77: 1359-1365

28 Sheng-Ming Xie, Mei Zhang, Zhi-Xin Fei, and Li-Ming Yuan*. Experimental comparison of chiral metal-organic framework used as a stationary phase in chromatography. J. Chromatogr. A, 2014, 1363: 137-143.

29 Hong Liu, Sheng-Ming Xie, Ping Ai, Jun-Hui Zhang, Mei Zhang, and Li-Ming Yuan*. Metal–Organic Framework  Co(d-Cam)1/2(bdc)1/2-(tmdpy) for Improved Enantioseparations on a Chiral Cyclodextrin Stationary Phase in Gas Chromatography. ChemPlusChem, 2014, 79(8): 1103-1108

30 Mei Zhang, Jun-Hui Zhang, Yan Zhang, Bang-Jin Wang, Sheng-Ming Xie, Li-Ming Yuan*. Chromatographic study on the high performance separation ability of a homochiral [Cu2(D-CAM)2(4,4′-BPY)]ND-Cam)2(4,4′-bpy)]n based-column by using racemates and positional isomers as test probes. J. Chromatogr. A, 2014, 1325: 163-170

31 XIE Shengming, ZHANG Zejun, YUAN Liming*. Chiral Metal-organic Frameworks [Mn3(HCOO)4(D-Cam)]n Used for Gas Chromatographic Separation. CHEMICAL JOURNAL OF CHINESE UNIVERSITIES, 2014, 35: 1652 ~1657

32 Zhi-Xin Fei, Mei Zhang, Jun-Hui Zhang, Li-Ming Yuan.* Chiral metal–organic framework used as stationary phases for capillary Electrochromatography. Analytica Chimica Acta, 2014, 830: 49–55

33 MEI ZHANG, MIN ZI, BANG-JIN WANG and LI-MING YUAN*. Uridine, Thymidine and Inosine Used as Chiral Stationary Phases in HPLC. Asian Journal of Chemistry, 2014, 26(8): 2226-2228

34 SHENGMING XIE, BANGJIN WANG, XINHUAN ZHANG, JUNHUI ZHANG, MEI ZHANG, AND LIMING YUAN*. Chiral 3D Open-Framework Material Ni(D-cam)(H2O)2 Used as GC Stationary Phase. CHIRALITY, 2014, 26: 27–32

35 Mei Zhang, Xu-Dong Xue, Jun-Hui Zhang, Sheng-Ming Xie, Yan Zhang and Li-Ming Yuan*. Enantioselective chromatographic resolution using a homochiral metal–organic framework in HPLC?. Anal. Methods, 2014, 6: 341.

36 Sheng-ming Xie, Li-Ming Yuan*. Metal–Organic Frameworks Used as Chromatographic Stationary Phase. Progress in Chemistry, 2013, 25(10): 153-160.

37 Xin-huan Zhang, Sheng-ming Xie, Ai-hong Duan, Bang-jin Wang, Li-Ming Yuan*. Separation performance of MOFs Zn(ISN)2?2H2O as stationary phase for high-resolution GC. Chromatographia, 2013, 76(13-14): 831- 836.

38 Mei Zhang, Zi-Jie Pu, Xing-Lian Chen, Xiao-Li Gong, Ai-Xin Zhu and Li-Ming Yuan*. Chiral recognition of a 3D chiral nanoporous metal–organic framework. Chem. Commun., 2013, 49 (45), 5201 – 5203.

39 Sheng-Ming Xie, Xin-Huan Zhang, Ze-Jun Zhang, and Li-Ming Yuan*. A porous chiral metal-organic framework InH(D-C10H14O4)2 with anionic-type diamond network for high-resolution gas chromatographic enantioseparations, Analytical Letters, 2013, 46(5): 753-756.

40 Sheng-Ming Xie, Xin-Huan Zhang, Ze-Jun Zhang, Mei Zhang, Jia Jia and Li-Ming Yuan*. A three-dimensional open-framework material with intrinsic chiral topology used as stationary phase in gas chromatography. Analytical and Bioanalytical Chemistry, 2013, 405(10): 3407-3412.

41 Fei-Yu Tian, Jun- Hui Zhang, Ai-Hong Duan, Bang-Jin Wang and Li-Ming Yuan*. Chiral separation of D,L-Mandelic Acid Using An Enantioselective Membrane Formed by Polycondensation of β-Cyclodextrin with 1,6-Diisocyanatohexane on A Polysulfone Membrane. Journal of Membrane and Separation Technology, 2012, 1(2): 72-78

42 Yun-Dong Jiang, Jun-Hui Zhang, Sheng-Ming Xie, Yin-Chun Lv, Mei Zhang, Chao Ma, Li-Ming Yuan*. Chiral Separation of D,L-Tyrosine Through Nitrocellulose Membrane. Journal of Applied Polymer Science, 2012, 124: 5187-5193.

43 Li-Ming Yuan. Preparative Chromatography Technology and Application (Second Edition). Beijing: Chemical Industry Press, 2012[袁黎明. 制备色谱技术及应用(第二版). 北京: 化学工业出版社, 2012].

44 Sheng-Ming Xie, Mei Zhang, Zhi-Yu Wang, and Li-Ming Yuan*. Porous Metal Membranes for Solid-Phase Extraction of Polycyclic Aromatic Hydrocarbons. Analyst, 2011, 136: 3988-3996.

45 Sheng-Ming Xie, Ze-Jun Zhang, Zhi-Yu Wang, and Li-Ming Yuan*. Chiral Metal-Organic Frameworks for High-Resolution Gas Chromatographic Separations. J. Am. Chem. Soc., 2011, 133: 11892-11895.

46 Ai-Hong Duan, Sheng-Ming Xie, Li-Ming Yuan*. Nanoparticles as stationary and pseudostationary phases in chromatographic and electrochromatographic separations. Trends in Analytical Chemistry, 2011, 30: 484-491.

47 CHAO MA, XIAO-LIN XU, PING AI, SHENG-MING XIE, YING-CHUN LV, HAI-QIN SHAN AND LI-MING YUAN*. Chiral Separation of D,L-Mandelic Acid through Cellulose Membranes. Chirality, 2011, 23: 379-382.

48 Li Zhao,?Ping Ai,?Ai-Hong Duan,?Li-Ming Yuan*. Single-walled carbon nanotubes for improved the enantioseparations on chiral ionic liquid stationary phase in GC. Analytical and Bioanalytical Chemistry, 2011, 399: 143-147.

49 Y.C. Lv, Z.H. Yan, C. Ma, and L.M. Yuan*. Preparative Enantioseparation of Ofloxacin by High Speed Countercurrent Chromatography Using L-(+)-Tartaric Acid as Chiral Selector. J. Liq. Chromatogr. & Rel. Tech., 2010, 33(13): 1328-1334..

50 Li-Ming Yuan. Chiral Recognition Materials. Bejing: Science Press, 2010(袁黎明. 手性识别材料. 北京: 科学出版社, 2010)

51 M. Zhang, W.H. Xi, M. Zi, Y. Peng, S.M. Xie, L.M. Yuan*. Enantioseparation of 38 Racemates on Four Chiral Columns in High Performance Liquid Chromatography. Chinese Journal of Analytical Chemistry, 2010, 38: 181-186

52 Min Zhao, Xiao-Lin Xu, Yun-Dong Jiang, Wen-Zhuo Sun, Wen-Fang Wang, Li-Ming Yuan*. Enantioseparation of trans-stilbene oxide using a cellulose acetate membrane. Journal of Membrane Science, 2009, 336: 149-153.

53 Wen-Fang Wang, Wei-Wei Xiong, Min Zhao, Wen-Zhuo Sun, Fu-Rong Li, Li-Ming Yuan*. Chiral separation of trans-stilbene oxide through cellulose acetate butyrate membrane. Tetrahedron Asymmetry, 2009, 20: 1052.

54 Wei-Wei Xiong, Wen-Fang Wang, Li Zhao, Qing Song, Li-Ming Yuan*. Chiral separation of (R, S)-2-phenyl-1-propanol through glutaraldehyde-crosslinked chitosan membranes. Journal of Membrane Science, 2009, 328: 268-272.

55 Li Fu-Rong, Song Qing, Zhao Li, Yuan Li-Ming*. Chromatographic Characteristics of L-AlaC4NTf2 Chiral Ionic Liquids as Stationary Phase in Capillary GC. Chemical Journal of Chinese University, 2009, 30(2):258-262.

56 Meng Yang, Min Zhao, Sheng-Ming Xie, Li-MingYuanж. Optical Resolution of (R,S)-2-phenyl-1-propanol Through Enantioselective Ethycellulose Membranes. Journal of Applied Polymer Science, 2009, 112: 2516-2521.

57 W. Z. Sun, L. M. Yuan*. Arabinose, Fucose, Ribodesose, Lyxose and Ribose Used as Chiral Stationary Phases in HPLC. J. Liq. Chromatogr. & Rel. Tech., 2009, 32(4): 553-559.

58 Y. Cai, Z. H. Yan, M. Zi, and L. M. Yuan*. Preparative Purification of Single-walled Carbon Nanotubes by High-speed Countercurrent chromatography. J. Liq. Chromatogr. & Rel. Tech., 2009, 32(3): 399-406.

59 F. Zhao, S.M. Chi, L.M. Yuan*. 4-Methylbenzoate of Oligosaccharide Used as Chiral Stationary Phases in HPLC. Chinese Journal of Analytical Chemistry, 2009, 37(2): 259.

60 Sheng-Ming Xie, Wen-Fang Wang, Ping Ai, Meng Yang, Li-Ming Yuan*. Chiral separation of (R,S)-2-phenyl-1-propanol through cellulose acetate butyrate membranes. Journal of Membrane Science, 2008, 321: 293-298.

61 Ying CAI, Zhi Hong YAN, Ying Chun LV, Mi ZI, Li Ming YUAN*. High-speed Countercurrent Chromatography for Purification of Single-walled Carbon Nanotubes. Chinese Chemical Letters, 2008, 19: 1345-1348.

62 JianYu Wang, Feng Zhao, Mei Zhang, Ya Peng, Li Ming Yuan*. Glucose, cellobiose, lactose and raffinose used as chiral stationary phases in HPLC. Chinese Chemical Letters, 2008, 19: 1248-1251.

63 Li-Ming Yuan. Effect of mobile phase additive on chiral separation. Separation and Purification Technology, 2008, 63: 701-705.

64 L.L. Zhou, W.Z. Sun, J.Y. Wang, L.M. Yuan*.3,5-Dimethylphenylcarbamate of Mono- and Di- saccharide Used as Chiral Stationary Phases in HPLC. Acta Chimica Sinica, 2008, 66: 2309-2312.

65 Y. Cai, Z.H. Yan, M. Zi, H. Ding, L.M. Yuan*. Purification of carbon nanotubes using chromatographic methods. Progress in Chemistry, 2008, 20(9): 1391-1395.

66 Chang Yin-xia, Ren Chao-xing and Yuan Li-ming*. Effect of Single-walled Carbon Nanotubes on Cellulose Phenylcarbamate Chiral Stationary Phases. Chemical Research in Chinese University, 2007, 23(6): 646-649.

67 Y. X. Chang, L. L. Zhou, G. X. Li, L. Li, and Li-Ming Yuan*. Single-Wall Carbon Nanotubes Used as Stationary Phase in HPLC. J. Liq. Chromatogr. & Rel. Tech., 2007, 30(19): 2953-2958.

68 L.L. Zhou, G.X. Li, J.Y. Wang, L.M. Yuan*. Preparation of N-(4-methylbenzoyl)phenylglycine stationary phase and its application to the separation of varions enantiomers. Chinese Journal of Analytical Chemistry, 2007, 35(9): 1301-1304.

69 Y. Cai, Z.H. Yan, M. Zi and L.M. Yuan*. Preparative Enantioseparation of DL-alpha-methylbenzylamine by High-speed Countercurrent Chromatography Using L-(+)-Tartaric Acid as Chiral Selector. J. Liq. Chromatogr. & Rel. Tech., 2007, 30(9): 1489-1495.

70 L. Li, M. Zi, C.X. Ren, L.M. Yuan*. The development of chiral stationary phase in gas chromatography. Progress in Chemistry, 2007, 19(2/3): 393-403.

71 Li-Ming Yuan,* Chao-Xin Ren, Li Li, Ping Ai, Zhi-Hong Yan, and Min Zi. Single-walled Carbon Nanotubes Used as Stationary Phase in GC. Analytical Chemistry, 2006, 78(18): 6384-6390.

72 Li-Ming Yuan*, Yan. Zhou, Yu-Hai Zhang, Min Zi, Yin-Xia Chang, Zhi-Gang Xu. Cellulose Derivatives Used as Chiral Stationary Phases in Capillary Gas Chromatography. Anal. Lett., 2006, 39(1): 173

73 Suhua Qi, Ping Ai, Cenyi Wang, Liming Yuan, Guangyi Zhang. The characteristics of a mixed stationary phase containing permethylated-?-CD and Perpentylated-?-CD in gas chromatography. Separation and purification Technology, 2006, 48: 310-313

74 Li-Ming Yuan,* Yi Han, Yan Zhou, Xia Meng, Zheng-Yu Li, Min Zi, and Yin-Xia Chang. (R)-N,N-Dimethyl-2-aminobutanol- bis(trifluoromethanesulfon)imidate Chiral Ionic Liquid Used as Chiral Selector in HPCE, HPLC and GC. Anal. Lett., 2006,39(7):1439

75 Ping AI, Jia Chuan LIU, Min ZI, Zhi Hua DENG, Zhi Hong YAN, Li Ming YUAN*. Enantioseparation of Aminoglutethimide by High-speed Counter- current Chromatography Using Carboxymethly-?-cyclodextrin as Chiral Selector. Chinese Chemical Letters, 2006, 17(6): 787-790.

76 Y.X. Chang, L.M. Yuan*, F. Zhao. Effect of Chiral Additives on Formation and Resolution of Cellulose-based Chiral Stationary Phases in HPLC. Chromatographia, 2006, 64(5/6): 313-316.

77 Z.G. Xu, P. Ai, L.M. Yuan* et al. Preparation and chromatographic properties of phenyl carbamate perderivatized β-cyclodextrin bonded silica gel chiral stationary phase. Chinese Journal of Analytical Chemistry, 2006, 34(1): 77-79.

78 P. Ai, K.H. Liu, M. Zi, S.H. Qi, L.M. Yuan*. Chromatographic characteristics of valinomycin used in capillary gas chromatography as a new stationary phase. Chemical Journal of Chinese University, 2006, 27 (11): 2073-2075.

79 Y.X. Chang, Z.L. Hou, L.M. Yuan* et al. Separation of enantiomers by high performance liquid chromatography using derivants of L-proline as chiral mobile phase additives. Chinese Journal of Analytical Chemistry, 2006, 34(supplement): S100-104.

80 P. Ai, L.N. Han, L.M. Yuan* et al. Bridge-linked β-cyclodextrin stationary phase in high performance liquid chromatography. Chinese Journal of Analytical Chemistry, 2006, 34(10): 1459.

81 C.X. Ren, P. Ai, L.M. Yuan* et al. Mixed chiral stationary phase containing ionic liquid and cellulose tri(3,5-dimethylphenyl carbamate) in gas chromatography. Chinese Journal of Analytical Chemistry, 2006, 34(11): 1637.

82 Z.H. Yan, P. Ai, L.M. Yuan*, Y. Zhou, Y. Cai. Chiral separation by high speed countercurrent chromatography. Chemistry, 2006, 69: w033.

83 Zi Min; Zhang Yuhai; Ai Ping; Yuan Liming*. Chromatographic Characteristic of Cellulose Derivatives as a New Stationary Phase in Capillary Gas Chromatography. Chemistry, 2006, 69(10): 793

84 Li-Ming Yuan. Preparative Chromatography Technology and Application. Beijing: Chemical Industry Press, 2005.

86 L.M. Yuan*, J.C. Liu, Z.H. Yan, P. Ai, X. Meng and Z.G. Xu. Enantioseparation of Chlorpheniramine by High-speed Counter-current Chromatography Using Carboxymethly-?-cyclodextrin as Chiral Selector. J. Liq. Chromatogr. & Rel. Tech., 2005, 28(19): 3057.

   教职工队伍

研究生导师 袁黎明 简介 2018-12-05 14:59:26
阮琼 教授简介2018-12-05 14:58:48
王君 博士简介 2018-12-05 14:57:24
研究生导师 陈业高 简介2018-12-05 14:55:59
首页上页1下页尾页