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Solid substrate-room temperature phosphorimetry for the determination of trace protein using ion association complex [Cu(BPY)2]2+·[(Fin)2]2− as a phosphorescent probe by Jia-Ming Liu; Shao-Qin Lin; Chang-Qing Lin; Li-Qun Chen; Fei-Ming Li; Li-Qing Zeng; Xiao-Mei Huang is a Chemistry article available to read on EtoBox.
Fluorescein (HFin) emitted strong and stable room temperature phosphorescence (RTP) on filter paper after set at 50 degrees C for 10 min using Li(+) as the ion perturber. HFin existed as Fin(-) when the pH value was in the range of 5.45-7.36. Fin(-) could react with [Cu(BPY)(2)](2+) (BPY: alpha,alpha-bipyridyl) to produce ion association complex [Cu(BPY)(2)](2+).[(Fin)(2)](2-), which could enhance the RTP signal of Hfin. In the presence of bovine serum albumin (BSA), the -COOH group of Fin(-) in the [Cu(BPY)(2)](2+).[(Fin)(2)](2-) could react with the -NH(2) group of BSA to form the ion association complex [Cu(BPY)(2)](2+).[(Fin-BSA)(2)](2-), which contained -CO-NH- bond. This complex could sharply enhance the RTP signal of Hfin and the Delta I(p) was directly proportional to the content of BSA. According to the facts above, a new solid substrate-room temperature phosphorimetry (SS-RTP) for the determination of trace protein had been established using the ion association complex [Cu(BPY)(2)](2+).[(Fin)(2)](2-)as a phosphorescent probe. This method had wide linear range (0.40 x 10(-9)-280 x 10(-9)mg l(-1)), high sensitivity (the detection limit (LD) was 1.4 x 10(-10)m gl(-1)), good
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- Author
- Jia-Ming Liu; Shao-Qin Lin; Chang-Qing Lin; Li-Qun Chen; Fei-Ming Li; Li-Qing Zeng; Xiao-Mei Huang
- Publisher
- Elsevier Science; Elsevier ; Elsevier Ltd.; Pergamon Press Ltd.; Elsevier BV (ISSN 1386-1425)
- Published
- 2009
- Language
- EN
- Field
- Chemistry (Physical Sciences)