Jiaming Liu, Xuan Lin, Aihong Wu, Li-Xiang Hu, Hangxia He, Honghua Huang, Longdi Li, Shaoqin Lin
Department of Chemistry, ZhangZhou Normal College, ZhangZhou 363000, PR China.
Spectrochim Acta A Mol Biomol Spectrosc. 2006 Sep;65(1):106-12. doi: 10.1016/j.saa.2005.09.041. Epub 2005 Dec 13.
A new solid substrate-room temperature phosphorescence (SS-RTP) quenching method for the determination of trace silver has been established. It is based on the fact that when using Mg(2+) as ion perturber and beta-CD as surfactant, the system of meta-nitrophenyfluorone (R)-polyoxyethylene-Cr(III) can emit strong and stable room temperature phosphorescence signal on filter paper whose surface is modified by polyvinyl alcohol (PVA)-H(3)BO(3)-NaOH. Ag(I) can catalyze KBrO(3) oxidizing R-PEO-Cr(III) system which causes the quenching of SS-RTP. The reducing value of phosphorescence intensity (DeltaI(p)) is directly proportional to the concentration of Ag(I) in the range of 3.2-160 ag spot(-1) (corresponding concentration: 2.43 fg ml(-1), the sample volume: 0.40 microl spot(-1)) with a detection limit (LD) of 0.97 ag spot(-1). The regression equation of working curve can be expressed as DeltaI(p)=13.92+0.3089m(Ag)+ (ag spot(-1)) (r=0.9983, n=6). This method has many advantages, such as a wide linear dynamic range, high sensitivity, good repeatability and selectivity. It has been applied to the determination of trace silver in real samples with satisfactory results. What is more, the mechanism of SS-RTP quenching method based on Ag(I) catalyzing KBrO(3) oxidizing meta-nitrophenyfluorone has also been discussed.
建立了一种用于测定痕量银的新型固体基质-室温磷光(SS-RTP)猝灭法。该方法基于以下事实:以Mg(2+)为离子干扰剂、β-环糊精为表面活性剂时,间硝基苯芴酮-(R)-聚氧乙烯-Cr(III)体系在经聚乙烯醇(PVA)-H(3)BO(3)-NaOH修饰的滤纸上能发射出强而稳定的室温磷光信号。Ag(I)能催化KBrO(3)氧化R-PEO-Cr(III)体系,导致SS-RTP猝灭。磷光强度的降低值(ΔI(p))在3.2 - 160 ag spot(-1)范围内(相应浓度:2.43 fg ml(-1),进样体积:0.40 μl spot(-1))与Ag(I)浓度成正比,检测限(LD)为0.97 ag spot(-1)。工作曲线的回归方程可表示为ΔI(p)=13.92 + 0.3089m(Ag) + (ag spot(-1))(r = 0.9983,n = 6)。该方法具有线性动态范围宽、灵敏度高、重复性和选择性好等诸多优点。已应用于实际样品中痕量银的测定,结果令人满意。此外,还探讨了基于Ag(I)催化KBrO(3)氧化间硝基苯芴酮的SS-RTP猝灭法的机理。