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在阳离子胶束介质中使用导数分光光度法,用2 -(5 - 溴 - 2 - 吡啶偶氮)- 5 - 二乙氨基苯酚同时测定镓和铟。

Simultaneous determination of gallium and indium with 2-(5-bromo-2-pyridylazo)-5-diethylaminophenol in cationic micellar medium using derivative spectrophotometry.

作者信息

Agnihotri Narinder K, Ratnani Sonia, Singh Vinay K, Singh Har B

机构信息

Department of Chemistry, University of Delhi, Delhi 110007, India.

出版信息

Anal Sci. 2003 Sep;19(9):1297-301. doi: 10.2116/analsci.19.1297.

Abstract

A new derivative spectrophotometric method for rapid and selective trace analysis of Ga3+ and In3+ and for their simultaneous determination using 2-(5-bromo-2-pyridylazo)-5-diethylaminophenol in a cationic micellar medium is reported. Molar absorptivity and Sandell's sensitivity of 1:1 Ga+ and In3+ complexes at their lambda(max) 553 nm and 558 nm are: 7.22 x 10(4) l mol(-1) cm(-1) and 5.85 x 10(4) l mol(-1) cm(-1), and 0.96 ng cm(-2) and 1.96 ng cm(-2), respectively. Linearity is observed in the concentration range 0.023-0.700 microg ml(-1) for gallium and 0.076-1.52 microg ml(-1) for indium; IUPAC detection limit is 0.012 and 0.035 ng ml(-1), respectively. These metal ions interfere with the determination of each other. However, 0.07-0.70 microg ml(-1) Ga3+ and 0.115-1.150 microg ml(-1) In3+ could be determined simultaneously when present together by the derivative method without any prior separation. The proposed procedures have been successfully applied for the individual and simultaneous determination of gallium and indium in synthetic binary mixtures, standard reference materials and environmental samples.

摘要

报道了一种新的导数分光光度法,用于快速、选择性地痕量分析Ga3+和In3+,并在阳离子胶束介质中使用2-(5-溴-2-吡啶偶氮)-5-二乙氨基苯酚同时测定它们。1:1 Ga+和In3+配合物在其最大吸收波长553 nm和558 nm处的摩尔吸光率和桑德尔灵敏度分别为:7.22×10(4) l mol(-1) cm(-1)和5.85×10(4) l mol(-1) cm(-1),以及0.96 ng cm(-2)和1.96 ng cm(-2)。镓在0.023 - 0.700 μg ml(-1)浓度范围内、铟在0.076 - 1.52 μg ml(-1)浓度范围内呈现线性;国际纯粹与应用化学联合会(IUPAC)检测限分别为0.012和0.035 ng ml(-1)。这些金属离子相互干扰测定。然而,采用导数法时,当0.07 - 0.70 μg ml(-1) Ga3+和0.115 - 1.150 μg ml(-1) In3+同时存在时,无需预先分离即可同时测定。所提出的方法已成功应用于合成二元混合物、标准参考物质和环境样品中镓和铟的单独及同时测定。

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