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Progress in Chemistry 2008, Vol. 20 Issue (12): 2053-2060 Previous Articles   Next Articles

• Review •

Application of Two Kinds of Liquid-Phase Mass Transfer in Microfluidic Analytical Chip

Shen Hong; Fang Qun

  

  1. (Institute of Microfluidic Analytical System, Zhejiang University, Hangzhou 310058, China)
  • Received: Revised: Online: Published:
  • Contact: Shen Hong
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Due to the micro scale of inner structure of microfluidic analytical chip, the fluid possesses of high specific surface area as well as small diffusion distance which remarkably improves mass transfer rate and enhances sample pretreatment efficiency, such as diffusion or extraction separation before determination. In this paper, the applications of two kinds of liquid-phase mass transfer between miscible phases or immiscible phases in microfluidic analytical chip are reviewed. Further microfabrication and integration based on liquid-phase mass transfer for more complex devices and wider range of functions are introduced. The difficulties in technique development and application tendency are also discussed.

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[1 ] 方肇伦(Fang Z L) . 微流控分析芯片(Microfluidic Analytical Chips) . 北京: 科学出版社(Beijing : Science Press) , 2003
[2 ] 方肇伦(Fang Z L) . 微流控分析芯片的制作及应用( Fabrication and Application of Microfluidic Analytical Chips) . 北京: 化学工业出版社(Beijing : Chemical Industry Press) , 2005
[3 ] Takayama S , McDonald J C , Ostuni E , et al . Proc. Natl . Acad.Sci . USA , 1999 , 96 : 5545 —5548
[4 ] Brody J P , Yager P. Sens. Actuators A , 1997 , 58 : 13 —18
[5 ] Weigl B H , Yager P. Sens. Actuators B , 1997 , 38P39 : 452 —457
[6 ] Weigl B H , Yager P. Science , 1999 , 283 : 346 —347
[7 ] Jandik P , Weigl B H , Kessler N , et al . J . Chromatogr. A ,2002 , 945 : 33 —40
[8 ] Kamholz A E , Weigl B H , Finlayson B A , et al . Anal . Chem. ,1999 , 71 : 5340 —5347
[9 ] Weigl B H , Kriebel J , Mayes K J , et al . Microchim. Acta. ,1999 , 131 : 75 —83
[10] Hatch A , Kamholz A E , Hawkins K R , et al . Nat . Biotech. ,2001 , 19 : 461 —465
[11] Cho B S , Schuster T G, Zhu X, et al . Anal . Chem. , 2003 , 75 :1671 —1675
[12] Bowden S A , Monaghan P B , Wilson R , et al . Lab Chip , 2006 ,6 : 740 —743
[13] 沈宏(Shen H) , 叶美英(Ye M Y) , 方群(Fang Q) 等. 分析化学(Chinese J . Anal . Chem. ) , 2005 , 33 (11) : 1659 —1662
[14] Huh Y S , Yang K, Hong Y K, et al . Proc. Biochem. 2007 , 42 :649 —654
[15] Jeon N L , Dertinger S K W, Chiu D T, et al . Langmuir , 2000 ,16 : 8311 —8316
[16] Pihl J , Sinclair J , Sahlin E , et al . Anal . Chem. , 2005 , 77 :3897 —3903
[17] Mao H , Cremer P S , Manson M D. Proc. Natl . Acad. Sci .USA , 2003 , 100 : 5449 —5454
[18] Koyama S , Amarie D , Soini H A , et al . Anal . Chem. , 2006 ,78 : 3354 —3359
[19] Jeon N L , Baskaran H , Dertinger S K, et al . Nat . Biotech. ,2002 , 20 : 826 —830
[20] Dertinger S K W, Jiang X, Li Z, et al . Proc. Natl . Acad. Sci .USA , 2002 , 99 : 12542 —12547
[21] Walker G M, Monteiro-Riviere N , Rouseab J , et al . Lab Chip ,2007 , 7 : 226 —232
[22] Shinohara K, Fukui T, Abe H , et al . Langmuir , 2006 , 22 :6477 —6480
[23] Heeren A , Luo C P , Roth G, et al . Microelec. Eng. , 2006 , 83 :1669 —1672
[24] Tokeshi M, Minagawa T, Kitamori T. J . Chromatogr. A , 2000 ,894 : 19 —23
[25] Tokeshi M, Minagawa T, Kitamori T. Anal . Chem. , 2000 , 72 :1711 —1714
[26] Kim H B , Ueno K, Chiba M, et al . Anal . Sci . , 2000 , 16 :871 —876
[27] Sato K, Tokeshi M, Sawada T, et al . Anal . Sci . , 2000 , 16 :455 —456
[28] Hisamoto H , Horiuchi T, Tokeshi M, et al . Anal . Chem. ,2001 , 73 : 1382 —1386
[29] Hisamoto H , Horiuchi T, Uchiyama K, et al . Anal . Chem. ,2001 , 73 : 5551 —5556
[30] Xiao H , Liang D , Liu G C , et al . Lab Chip , 2006 , 6 : 1067 —1072
[31] Minagawa T, Tokeshi M, Kitamori T. Lab Chip , 2001 , 1 : 72 —75
[32] Yamada M, Kasim V , Nakashima M, et al . Biotech. Bioeng. ,2004 , 88 : 489 —494
[33] Hibara A , Tokeshi M, Uchiyama K, et al . Anal . Sci . , 2001 ,17 : 89 —93
[34] Surmeian M, Slyadnev M N , Hisamoto H , et al . . Anal . Chem.2002 , 74 : 2014 —2020
[35] Maruyama T, Mastushita H , Uchida J , et al . Anal . Chem. ,2004 , 76 : 4495 —4500
[36] Kuban P , Berg J , Dasgupta P K. Anal . Chem. , 2003 , 75 :3549 —3556
[37] Mata C , Longmire E K, McKenna D H , et al . Microfluid.Nanofluid. , 2008 , 5 : 529 —540
[38] Hibara A , Nonake M, Hisamoto H , et al . Anal . Chem. , 2002 ,74 : 1724 —1728
[39] Aota A , Nonake M, Hibara A , et al . Angew. Chem. Int . Ed. ,2007 , 119 : 896 —898
[40] Aota A , Hibara A , Kitamori T. Anal . Chem. , 2007 , 79 :3919 —3924
[41] Burns J R , Ramshaw C. Lab Chip , 2001 , 1 : 10 —15
[42] Zheng B , Tice J D , Roach L S , Ismagilov R S. Angew. Chem.Int . Ed. , 2004 , 43 : 2508 —2511
[43] Zheng B , Tice J D , Ismagilov R S. Adv. Mater. , 2004 , 16 :1365 —1368
[44] Gerdts C J , Tereshko V , Yadav M K, Ismagilov R S , et al .Angew. Chem. Int . Ed. , 2006 , 45 : 8156 —8160.
[45] Wang W H , Zhang ZL , Xie Y N , et al . Langmuir , 2007 , 23 :11924 —11931
[46] Kralj J G, Sahoo H R , Jensen K F. Lab Chip , 2007 , 7 : 256 —263
[47] Chen H , Fang Q , Yin X F , et al . Lab Chip , 2005 , 5 : 719 —725
[48] Fang Q , Chen H , Fang Z L. 9th International Conference on Miniaturized Systems for Chemistry and Life Sciences (eds. Jensen C F , Han J , Harrison D J , Voldman J . ) . Boston : Academic Publisher , 2005. 128 —131
[49] Shen H , Fang Q , Fang Z L. Lab Chip , 2006 , 6 : 1387 —1389
[50] Kenis P J A , Ismagilov R F , Whitesides G M. Science , 1999 ,285 : 83 —85
[51] Kenis P J A , Ismagilov R F , Takayama S , et al . Acc. Chem.Res. , 2000 , 33 : 841 —847
[52] Hisamoto H , Shimizu Y, Uchiyama K, et al . Anal . Chem. ,2003 , 75 : 350 —354
[53] Malmstadt N , Nash M A , Purnell R F , Schmidt J J . Nano Lett . ,2006 , 6 : 1961 —1965
[54] Malmstadt N , Jeon T J , Nash M A , Schmidt J J . Adv. Sci .Tech. , 2006 , 53 : 22 —31
[55] Gershow M, Golovchenko J A. Nature Nanotech. , 2007 , 2 :775 —779
[56] Jeon T J , Malmstadt N , Schmidt J J . J . Am. Chem. Soc. ,2006 , 128 : 42 —43
[57] Schilling E A , Kamholz A E , Yager P. Anal . Chem. , 2002 , 74 :1798 —1804
[58] Tokeshi M, Minagawa T, Uchiyama K, et al . Anal . Chem. ,2002 , 74 : 1565 —1571
[59] Kikutani Y, Hisamoto H , Tokeshi M, et al . Lab Chip , 2004 , 4 :328 —332

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