Citation: WANG Bingxiang, CHAI Weibo, TANG Anna, DING Guosheng. Application of coating technology in capillary electrophoresis for chiral separation[J]. Chinese Journal of Chromatography, ;2015, 33(4): 334-341. doi: 10.3724/SP.J.1123.2014.12041 shu

Application of coating technology in capillary electrophoresis for chiral separation

  • Corresponding author: DING Guosheng, 
  • Received Date: 30 December 2014
    Available Online: 5 February 2015

    Fund Project: 国家自然科学基金项目(21005054,21275081). (21005054,21275081)

  • Chirality is one of the intrinsic attributes of the nature. Chiral separation and analysis are of great importance in many research fields, such as life science, environmental science, biological engineering and pharmaceutical engineering. Currently, chiral capillary electrophoresis technique used for the enantioselective resolution of different kinds of racemates has become one of the most distinctive research and application fields. However, the adsorption of the analytes (or chiral selectors) on the inner wall of the capillary is a common problem in capillary electrophoresis chiral separation. Coating technology, namely modification of the inner wall of the capillary, is the simplest and most effective way to suppress disadvantageous adsorption, and to improve the separation efficiency and analysis repeatability. In this review, the recent applications of different coating procedures in chiral analysis are presented, and the future developments in this field are also prospected.
  • 加载中
    1. [1]

      [1] Pei L, Lucy C A. J Chromatogr A, 2014, 1365: 226  

    2. [2]

      [2] Cheong W J, Ali F, Kim Y S, et al. J Chromatogr A, 2013, 1308: 1  

    3. [3]

      [3] Rezanka P, Navratilová K, Rezanka M, et al. Electrophoresis, 2014, 35: 2701  

    4. [4]

      [4] Escuder-Gilabert L, Martín-Biosca Y, Medina-Hernández M J, et al. J Chromatogr A, 2014, 1357: 2  

    5. [5]

      [5] Dominguez-Vega E, Perez-Fernández V, Crego A L. Electrophoresis, 2014, 35: 28  

    6. [6]

      [6] Kang J W, Yang Y T, You J M, et al. J Chromatogr A, 1998, 825: 81  

    7. [7]

      [7] Kang J W, Wistuba D, Schurig V. Electrophoresis, 2003, 24: 2674  

    8. [8]

      [8] Sanchez-Hernandez L, Dominguez-Vega E, Montealegre C, et al. Electrophoresis, 2014, 35: 1244  

    9. [9]

      [9] Katayama H, Ishihama Y, Asakawa N. Anal Chem, 1998, 70(11): 2254  

    10. [10]

      [10] Katayama H, Ishihama Y, Asakawa N. Anal Chem, 1998, 70(24): 5272  

    11. [11]

      [11] Nehme R, Perrin R, Guerlavais V. Electrophoresis, 2009, 30: 3772  

    12. [12]

      [12] Zakaria P, Macka M, Haddad P R. J Chromatogr A, 2004, 1031: 179  

    13. [13]

      [13] Han Y H, Bai Y, Xiao Y L, et al. Electrophoresis, 2011, 32: 2693  

    14. [14]

      [14] Hjerten S, Wu B L. J Chromatogr, 1985, 347: 191  

    15. [15]

      [15] Bednar P, Aturki Z, Stransky Z, et al. Electrophoresis, 2001, 22: 2129  

    16. [16]

      [16] Aturki Z, Desiderio C, Mannina L, et al. J Chromatogr A, 1998, 817: 91  

    17. [17]

      [17] Chiari M, Cretich M, Crini G, et al. J Chromatogr A, 2000, 894: 95  

    18. [18]

      [18] Wang Z Y, Wang J F, Hu Z D, et al. Electrophoresis, 2007, 28: 938  

    19. [19]

      [19] Wang Z Y, Mu C J, Kang J W, et al. Chromatographia, 2012, 75: 1211  

    20. [20]

      [20] Magnusson J, Wan H, Blomberg L G. Electrophoresis, 2002, 23: 3013  

    21. [21]

      [21] Awadallah B, Schmidt P C, Holzgrabe U, et al. Electrophoresis, 2003, 24: 2627  

    22. [22]

      [22] Zhao S L, Liu Y M. Anal Chim Acta, 2001, 426: 65  

    23. [23]

      [23] Barker G E, Russo P, Hartwick R A. Anal Chem, 1992, 64(23): 3024  

    24. [24]

      [24] Wu B, Wang Q Q, Liu Q, et al. Electrophoresis, 2005, 26: 1013  

    25. [25]

      [25] Sun X F, Li D, Lee M L. Anal Chem, 2009, 81(15): 6278  

    26. [26]

      [26] Schulze M, Belder D. Electrophoresis, 2012, 33: 370  

    27. [27]

      [27] Vaccher M P, Lipka E, Bonte J P, et al. Electrophoresis, 2005, 26: 2974  

    28. [28]

      [28] Suntornsuk L, Ployngam S. J Pharm Biomed Anal, 2010, 51: 541  

    29. [29]

      [29] Du Y X, Chen J M. Chinese Journal of Analytical Chemistry (杜迎翔, 陈建民. 分析化学), 2004, 32(10): 1295

    30. [30]

      [30] Ali I, Aboul-Enein H Y. J Sep Sci, 2006, 29: 762  

    31. [31]

      [31] Okamoto Y, Yashima E. Angew Chem Int Ed, 1998, 37: 1020  

    32. [32]

      [32] Rezanka P, Navratiloa K, Rezanka M, et al. Electrophoresis, 2014, 35: 2701  

    33. [33]

      [33] Escuder-Gilabert L, Martin-Biosca Y, Medina-Hernandez M J, et al. J Chromatogr A, 2014, 1357: 2  

    34. [34]

      [34] Xiao Y, Ng S C, Tan T T Y, et al. J Chromatogr A, 2012, 1269: 52  

    35. [35]

      [35] Prokhorova A F, Kuznetsov M A, Shapovalova E N, et al. Procedia Chem, 2010, 2: 9  

    36. [36]

      [36] Lee D, Shamsi S A. Electrophoresis, 2002, 23: 1314  

    37. [37]

      [37] Wang Y C, Zeng Z R, Guan N, et al. Electrophoresis, 2001, 22: 2167  

    38. [38]

      [38] Stavrou I J, Moore L Jr, Fernand V E, et al. Electrophoresis, 2013, 34: 1334  

    39. [39]

      [39] Gotti R, Calleri E, Massolini G, et al. Electrophoresis, 2006, 27: 4746  

    40. [40]

      [40] Geng L, Bo T, Liu H, et al. Chromatographia, 2004, 59: 65

    41. [41]

      [41] Bo T, Wiedmer S K, Riekkola M L. Electrophoresis, 2004, 25: 1784  

    42. [42]

      [42] Han N Y, Hautala J T, Bo T, et al. Electrophoresis, 2006, 27: 1502  

    43. [43]

      [43] Wiedmer S K, Bo T, Riekkola M L. Anal Biochem, 2008, 373: 26  

    44. [44]

      [44] Zuo X B, Wang K, Zhou L J, et al. Electrophoresis, 2003, 24: 3202  

    45. [45]

      [45] Kamande M W, Zhu X F, Kapnissi-Christodoulou C, et al. Anal Chem, 2004, 76(22): 6681  

    46. [46]

      [46] Dubsky P, Svobodova J, Tesarova E, et al. J Chromatogr B, 2008, 875: 35  

    47. [47]

      [47] Al-Othman Z A, Al-Warthan A, Alam S D, et al. Biomed Chromatogr, 2014, 28: 1514  

    48. [48]

      [48] Dai R J, Tang L, Li H, et al. J Appl Polym Sci, 2007, 106: 2041  

    49. [49]

      [49] Lee H, Dellatore S M, Miller W M. Science, 2007, 318: 426  

    50. [50]

      [50] Ouyang R Z, Lei J P, Ju H X. Chem Commun, 2008: 5761

    51. [51]

      [51] Kohri M, Nannichi Y, Kohma H, et al. Colloids Surf A, 2014, 449: 114  

    52. [52]

      [52] Liu C M, Liang R P, Wang X N, et al. J Chromatogr A, 2013, 1294: 145  

    53. [53]

      [53] Liang R P, Wang X N, Liu C M, et al. J Chromatogr A, 2014, 1323: 135  

    54. [54]

      [54] Chang C L, Wang X, Bai Y, et al. Trends Anal Chem, 2012, 39: 195  

    55. [55]

      [55] Chen J, Ding G S, Yue C Y, et al. Chinese Journal of Chromatography (陈杰, 丁国生, 岳春月, 等. 色谱), 2012, 30(1): 3

    56. [56]

      [56] Li S Z, Ding G S. Journal of Instrumental Analysis (李世滋, 丁国生. 分析测试学报), 2014, 33(5): 615

    57. [57]

      [57] Iacob B C, Bodoki E, Oprean R. Electrophoresis, 2014, 35: 2722  

    58. [58]

      [58] Liang R P, Liu C M, Meng X Y, et al. J Chromatogr A, 2012, 1266: 95  

    59. [59]

      [59] Na N, Hu Y P, Ouyang J, et al. Anal Chim Acta, 2004, 527: 139  

    60. [60]

      [60] Chen J L, Hsieh K H. Electrophoresis, 2011, 32: 398  

    61. [61]

      [61] Li M, Liu X, Jiang F Y, et al. J Chromatogr A, 2011, 1218: 3725  

    62. [62]

      [62] Weng X X, Bi H Y, Liu B H, et al. Electrophoresis, 2006, 27: 3129  

    63. [63]

      [63] Dong X L, Wu R A, Dong J, et al. Electrophoresis, 2008, 29: 3933  

    64. [64]

      [64] Kitagawa F, Sudaki H, Sueyoshi K, et al. Anal Sci, 2013, 29: 107  

    65. [65]

      [65] Wang D M, Song X J, Duan Y, et al. Electrophoresis, 2013, 34: 1339  

    66. [66]

      [66] Yue C Y, Ding G S, Liu F J, et al. J Chromatogr A, 2013, 1311: 176  

    67. [67]

      [67] Li H, Ding G S, Yue C Y, et al. Electrophoresis, 2012, 33: 2012  

    68. [68]

      [68] Liu F J, Ding G S, Tang A N. Food Chem, 2014, 145: 109  

    69. [69]

      [69] Liu F J, Liu C T, Li W, et al. Talanta, 2015, 132: 366  

    70. [70]

      [70] Wang B X, Chai W B, Ding G S, et al. J Sep Sci, 2015, 38: 332  

    71. [71]

      [71] Gong Z S, Duan L P, Tang A N. Microchim Acta, DOI: 10.1007/s00604-015-1449-0

    72. [72]

      [72] Yang Y, Wu J W, Gou X L, et al. Anal Methods, 2013, 5: 5753  

    73. [73]

      [73] Kitagawa F, Kamiya M, Otsuka K. J Chromatogr B, 2008, 875: 323  

    74. [74]

      [74] Chu Y J, Xu W C, Edgar J S, et al. J Appl Polym Sci, 2011, 122: 2167  

    75. [75]

      [75] Ye N S, Li J, Xie Y L, et al. Electrophoresis, 2013, 34: 841  

    76. [76]

      [76] Li X J, Chang C L, Wang X, et al. Electrophoresis, 2014, 35: 2733  

    77. [77]

      [77] Fei Z X, Zhang M, Zhang J H, et al. Anal Chim Acta, 2014, 830: 49  

  • 加载中
    1. [1]

      Ying Chen Ronghua Yan Weiyan Yin . Research Progress on the Synthesis of Metal Single-Atom Catalysts and Their Applications in Electrocatalytic Hydrogen Evolution Reactions. University Chemistry, 2025, 40(9): 344-353. doi: 10.12461/PKU.DXHX202503066

    2. [2]

      Siwei Hou Yaxin Niu Guanglu Zhang Yanmei Yang Xu Wang Zhenzhen Chen . Application of Solid-Phase Microextraction and Mass Spectrometry in Environmental Detection. University Chemistry, 2026, 41(3): 297-306. doi: 10.12461/PKU.DXHX202504078

    3. [3]

      Qiuting Zhang Fan Wu Jin Liu Zian Lin . Chromatographic Stationary Phase and Chiral Separation Using Frame Materials. University Chemistry, 2025, 40(4): 291-298. doi: 10.12461/PKU.DXHX202405174

    4. [4]

      Dongheng WANGSi LIShuangquan ZANG . Construction of chiral alkynyl silver chains and modulation of chiral optical properties. Chinese Journal of Inorganic Chemistry, 2025, 41(1): 131-140. doi: 10.11862/CJIC.20240379

    5. [5]

      Jin Tong Shuyan Yu . Crystal Engineering for Supramolecular Chirality. University Chemistry, 2024, 39(3): 86-93. doi: 10.3866/PKU.DXHX202308113

    6. [6]

      Runjie Li Hang Liu Xisheng Wang Wanqun Zhang Wanqun Hu Kaiping Yang Qiang Zhou Si Liu Pingping Zhu Wei Shao . 氨基酸的衍生及手性气相色谱分离创新实验. University Chemistry, 2025, 40(6): 286-295. doi: 10.12461/PKU.DXHX202407059

    7. [7]

      Renxiao Liang Zhe Zhong Zhangling Jin Lijuan Shi Yixia Jia . A Palladium/Chiral Phosphoric Acid Relay Catalysis for the One-Pot Three-Step Synthesis of Chiral Tetrahydroquinoline. University Chemistry, 2024, 39(5): 209-217. doi: 10.3866/PKU.DXHX202311024

    8. [8]

      Haiying Wang Andrew C.-H. Sue . How to Visually Identify Homochiral Crystals. University Chemistry, 2024, 39(3): 78-85. doi: 10.3866/PKU.DXHX202309004

    9. [9]

      Keying Qu Jie Li Ziqiu Lai Kai Chen . Unveiling the Mystery of Chirality from Tartaric Acid. University Chemistry, 2024, 39(9): 369-378. doi: 10.12461/PKU.DXHX202310091

    10. [10]

      Guilan He Yaofeng Yuan . 手性二茂铁双膦配体Xyliphos的合成及应用. University Chemistry, 2025, 40(8): 130-137. doi: 10.12461/PKU.DXHX202409122

    11. [11]

      Xilin Zhao Xingyu Tu Zongxuan Li Rui Dong Bo Jiang Zhiwei Miao . Research Progress in Enantioselective Synthesis of Axial Chiral Compounds. University Chemistry, 2024, 39(11): 158-173. doi: 10.12461/PKU.DXHX202403106

    12. [12]

      Ke QIAOYanlin LIShengli HUANGGuoyu YANG . Advancements in asymmetric catalysis employing chiral iridium (ruthenium) complexes. Chinese Journal of Inorganic Chemistry, 2024, 40(11): 2091-2104. doi: 10.11862/CJIC.20240265

    13. [13]

      Ruiying WANGHui WANGFenglan CHAIZhinan ZUOBenlai WU . Three-dimensional homochiral Eu(Ⅲ) coordination polymer and its amino acid configuration recognition. Chinese Journal of Inorganic Chemistry, 2025, 41(5): 877-884. doi: 10.11862/CJIC.20250052

    14. [14]

      Xiaoning TANGJunnan LIUXingfu YANGJie LEIQiuyang LUOShu XIAAn XUE . Effect of sodium alginate-sodium carboxymethylcellulose gel layer on the stability of Zn anodes. Chinese Journal of Inorganic Chemistry, 2024, 40(8): 1452-1460. doi: 10.11862/CJIC.20240191

    15. [15]

      CCS Chemistry 综述推荐│绿色氧化新思路:光/电催化助力有机物高效升级

      . CCS Chemistry, 2025, 7(10.31635/ccschem.024.202405369): -.

    16. [16]

      Yifan Liu Haonan Peng . AI-Assisted New Era in Chemistry: A Review of the Application and Development of Artificial Intelligence in Chemistry. University Chemistry, 2025, 40(7): 189-199. doi: 10.12461/PKU.DXHX202405182

    17. [17]

      Conghao Shi Ranran Wang Juli Jiang Leyong Wang . The Illustration on Stereoisomers of Macrocycles Containing Multiple Chiral Centers via Tröger Base-based Macrocycles. University Chemistry, 2024, 39(7): 394-397. doi: 10.3866/PKU.DXHX202311034

    18. [18]

      Tingyu Zhu Hui Zhang Wenwei Zhang . Exploration and Practice of Ideological and Political Education in the Course of Experiments on Chemical Functional Molecules: Synthesis and Catalytic Performance Study of Chiral Mn(III)Cl-Salen Complex. University Chemistry, 2024, 39(4): 75-80. doi: 10.3866/PKU.DXHX202311011

    19. [19]

      Yan Li Xinze Wang Xue Yao Shouyun Yu . 基于激发态手性铜催化的烯烃EZ异构的动力学拆分——推荐一个本科生综合化学实验. University Chemistry, 2024, 39(5): 1-10. doi: 10.3866/PKU.DXHX202309053

    20. [20]

      Jie WUZhihong LUOXiaoli CHENFangfang XIONGLi CHENBiao ZHANGBin SHIQuansheng OUYANGJiaojing SHAO . Critical roles of AlPO4 coating in enhancing cycling stability and rate capability of high voltage LiNi0.5Mn1.5O4 cathode materials. Chinese Journal of Inorganic Chemistry, 2025, 41(5): 948-958. doi: 10.11862/CJIC.20240400

Metrics
  • PDF Downloads(0)
  • Abstract views(753)
  • HTML views(61)

通讯作者: 陈斌, bchen63@163.com
  • 1. 

    沈阳化工大学材料科学与工程学院 沈阳 110142

  1. 本站搜索
  2. 百度学术搜索
  3. 万方数据库搜索
  4. CNKI搜索
Address:Zhongguancun North First Street 2,100190 Beijing, PR China Tel: +86-010-82449177-888
Powered By info@rhhz.net

/

DownLoad:  Full-Size Img  PowerPoint
Return