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¡¾½»Á÷¡¿Applications and trends in electrochemiluminescence@ChemSocRev ÒÑÓÐ2È˲ÎÓë
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http://www.rsc.org/publishing/jo ... le.asp?doi=b923679c ¡¾ÍƼöÀíÓÉ¡¿ÕâÊÇECL·½Ãæ×î½üµÄ×ÛÊö£¬ÀïÃæµÄºÜ¶àÄÚÈݱȽÏС£ÓÐÐËȤ£¬¿ÉÒԲο¼Ò»Ï¡£ ´Ë·½ÏòµÄ½ÏÔçÆÚ¾µä×ÛÊö£º [1] Bard, A. J. Electrogenerated Chemiluminescence, Marcel Dekker: New York, 2004; Chap. 1. [2] Richter, M. M., Electrochemiluminescence (ECL). Chem. Rev. 2004, 104, (6), 3003-3036. [3] Miao, W. J., Electrogenerated Chemiluminescence and Its Biorelated Applications. Chem. Rev. 2008, 108, (6), 2506-2553. ÆäËü×ÛÊö [1] Pyati, R.; Richter, M. M., ECL¡ªElectrochemical luminescence. Annu. Rep. Prog. Chem., Sect. C: Phys. Chem. 2007, 103, 12-78. [2] Knight, A. W., A review of recent trends in analytical applications of electrogenerated chemiluminescence. TrAC-Trends Anal. Chem. 1999, 18, (1), 47-62. [3] Fahnrich, K. A.; Pravda, M.; Guilbault, G. G., Recent applications of electrogenerated chemiluminescence in chemical analysis. Talanta 2001, 54, (4), 531-559. [4] Gorman, B. A.; Francis, P. S.; Barnett, N. W., Tris(2,2'-bipyridyl)ruthenium(II) chemiluminescence. Analyst 2006, 131, (5), 616-639. [5] Yin, X. B.; Wang, E. K., Capillary electrophoresis coupling with electrochemilurninescence detection: a review. Anal. Chim. Acta 2005, 533, (2), 113-120. [6] Lee, W. Y., Tris (2,2'-bipyridyl)ruthenium(II) electrogenerated chemiluminescence in analytical science. Mikrochim. Acta 1997, 127, (1-2), 19-39. [7] Du, Y.; Wang, E. K., Capillary electrophoresis and microchip capillary electrophoresis with electrochemical and electrochemiluminescence detection. J. Sep. Sci. 2007, 30, (6), 875-890. [8] Wei, H.; Wang, E. K., Solid-state electrochemiluminescence of tris(2,2'-biypyridyl) ruthenium. TrAC-Trends Anal. Chem. 2008, 27, (5), 447-459. È«ÎÄ£º http://d.namipan.com/d/32d22a7f2 ... 8ede72f09186cc32d00 ÏÂÃæÊÇÕªÒª£º Electrochemiluminescence (ECL) is chemiluminescence triggered by electrochemical techniques. More than 150 ECL assays with remarkably high sensitivity and extremely wide dynamic range are currently available, and accounts for hundreds of millions of dollars in sales per year. The recent development of ECL is particularly rapid. After a brief introduction to ECL, this critical review presents the active and/or emerging areas of ECL research as well as new applications and phenomena of ECL, such as light-emitting electrochemical cell, wireless electrochemical microarray using ECL as photonic reporter, high throughput analysis, aptasensors, immunoassays and DNA analysis, ECL of nanoclusters and carbon nanomaterials, ECL imaging techniques, scanning ECL microscopy, colorimetric ECL sensor, surface plasmon-coupled ECL, electrostatic chemiluminescence, soliton-like ECL waves, ECL investigation of molecular interaction, and single molecule detection. Finally, some perspectives on this rapidly developing field are discussed (322 references). ¡¾±³¾°¼ò½é¡¿µç»¯Ñ§·¢¹â£¨Electrochemiluminescence, ECL£©£¬ÊÇÖ¸»ù̬·Ö×Ó²ÎÓëµç»¯Ñ§·´Ó¦²¢»ñµÃÄÜÁ¿£¬Ö®ºó»ù̬·Ö×ÓԾǨµ½¼¤·¢Ì¬£¬¼¤·¢Ì¬Ôٻص½»ù̬ʱ·¢¹âµÄÏÖÏó¡£ ÒѾÉÌÆ·»¯µÄÌåϵ----Èý(2,2¡¯-ÁªßÁà¤)îÉ£¨¼´Ru(bpy)32+£©µÄµç»¯Ñ§·¢¹â¡£ Óŵ㣺·¢¹âÇ¿¶È¸ß¡¢·¢¹âÊÔ¼ÁÄÜÔÚË®ÈÜÒººÍÓлúÈÜÒººÜºÃµØÈܽ⡢ÒòÎÞ±³¾°¹âÔ´¸ÉÈŶøÓкܺõÄÁéÃô¶È¡¢¾ßÓкܺõÄʱ¼äºÍ¿Õ¼ä·Ö±æÄÜÁ¦¡¢²âÁ¿µÄÏßÐÔ·¶Î§¿í¡£ [ Last edited by weihui_cn on 2010-9-26 at 03:02 ] |
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