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基于聚氯乙烯中席夫碱膜的镍(II)选择性传感器。

Ni(II) selective sensors based on Schiff bases membranes in poly(vinyl chloride).

作者信息

Gupta Vinod K, Singh Ashok K, Pal Manoj K

机构信息

Department of Chemistry, Indian Institute of Technology Roorkee, Roorkee 247 667, India.

出版信息

Anal Chim Acta. 2008 Aug 29;624(2):223-31. doi: 10.1016/j.aca.2008.06.054. Epub 2008 Jul 9.

Abstract

The two nickel chelates of Schiff bases, 3-hydroxy-N-{2-[(3-hydroxy-N-phenylbutyrimidoyl)-amino]-phenyl}-N'-phenylbutyramidine (M(1)) and bis-4-(ethyliminomethyl)naphthalene-1-ol (M(2)), have been synthesized and explored as ionophores for preparing PVC-based membrane sensors selective to nickel ion. The influences of membrane compositions on the potentiometric response of the electrodes have been found to substantially improve the performance characteristics. The best performance was obtained with the electrode having a membrane composition (w/w; mg) of (M(1)): PVC:NaTPB:CN in the ratio 5:150:5:150. The sensor shows a linear potential response for Ni(2+) over a wide concentration range 1.6x10(-7) to 1.0x10(-2) M with Nernstian compliance (30.0+/-0.2 mV/decade of activity) within pH range 2.5-9.5 and a fast response time of 10 s. The sensor has been found to work satisfactorily in partially non-aqueous media up to 20% (v/v) content of methanol, ethanol, and acetonitrile and could be used for a period of 4 months. The analytical usefulness of the proposed electrode has been evaluated by its application in the determination of nickel in real samples. The practical utility of the membrane electrode has also been observed in the presence of surfactants.

摘要

合成了席夫碱的两种镍螯合物,即3-羟基-N-{2-[(3-羟基-N-苯基丁酰亚胺基)-氨基]-苯基}-N'-苯基丁酰胺(M(1))和双-4-(乙基亚氨基甲基)萘-1-醇(M(2)),并将其作为离子载体用于制备对镍离子具有选择性的聚氯乙烯基膜传感器。已发现膜组成对电极电位响应的影响可显著改善性能特征。当膜组成(重量/重量;毫克)为(M(1)):聚氯乙烯:四苯硼钠:氰化物,比例为5:150:5:150时,电极表现出最佳性能。该传感器在1.6×10⁻⁷至1.0×10⁻² M的宽浓度范围内对Ni(2+)呈现线性电位响应,在pH范围2.5 - 9.5内符合能斯特响应(30.0±0.2 mV/十倍活性),响应时间为10 s。已发现该传感器在甲醇、乙醇和乙腈含量高达20%(体积/体积)的部分非水介质中能令人满意地工作,并且可使用4个月。通过将其应用于实际样品中镍的测定,评估了所提出电极的分析实用性。在表面活性剂存在的情况下,也观察到了膜电极的实际效用。

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