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新型涂层热解石墨电极的制备及其在生物和环境样品中 Cd²⁺离子的选择性纳米级检测中的应用:新合成大环聚合物膜。

Fabrication of novel coated pyrolytic graphite electrodes for the selective nano-level monitoring of Cd²⁺ ions in biological and environmental samples using polymeric membrane of newly synthesized macrocycle.

机构信息

Department of Chemistry, Indian Institute of Technology-Roorkee, Rookee 247667, India.

Department of Chemistry, Indian Institute of Technology-Roorkee, Rookee 247667, India.

出版信息

Anal Chim Acta. 2015 Feb 20;860:51-60. doi: 10.1016/j.aca.2014.12.023. Epub 2014 Dec 16.

DOI:10.1016/j.aca.2014.12.023
PMID:25682247
Abstract

Novel 5-amino-1,3,4-thiadiazole-2-thiol unit based macrocyclic ionophore 5,11,17-trithia-1,3,7,9,13,15,19,20,21-nonaazatetracyclo[14.2.1.1(4,7).1(10,13)]henicosa-4(20),10(21),16(19)-triene-6,12,18-trithione (M1), was synthesized and characterized. Preliminary studies on M1 have showed that it has more the affinity toward Cd(2+) ion. Thus, the macrocyclic ionophore (M1) was used as electroactive material in the fabrication of PVC-membrane electrodes such as polymeric membrane electrode (PME), coated graphite electrode (CGE) and coated pyrolytic graphite electrode (CPGE) were prepared and its performance characteristic were compared with. The electroanalytical studies performed on PME, CGE and CPGE revealed that CPGE having membrane composition M1:PVC:1-CN:NaTPB in the ratio of 7:37:54:2 exhibits the best potentiometric characteristics in terms of detection limit of 7.58×10(-9) mol L(-1), Nernstian slope of 29.6 mV decade(-1) of activity. The sensor was found to be independent of pH in the range 2.5-8.5. The sensor showed a fast response time of 10s and could be used over a period of 4 months without any significant divergence in its potentiometric characteristics. The sensor has been employed for monitoring of the Cd(2+) ion in real samples and also used as an indicator electrode in the potentiometric titration of Cd(2+) ion with EDTA.

摘要

基于新型 5-氨基-1,3,4-噻二唑-2-硫醇单元的大环离子载体 5,11,17-三硫-1,3,7,9,13,15,19,20,21-九氮杂环二十一烷-4(20),10(21),16(19)-三硫醇(M1)已被合成并进行了表征。对 M1 的初步研究表明,它对 Cd(2+)离子具有更高的亲和力。因此,大环离子载体(M1)被用作制备 PVC 膜电极的电活性材料,如聚合物膜电极(PME)、涂覆石墨电极(CGE)和涂覆热解石墨电极(CPGE),并对其性能进行了比较。在 PME、CGE 和 CPGE 上进行的电化学研究表明,CPGE 具有膜组成 M1:PVC:1-CN:NaTPB 的比例为 7:37:54:2,在检测限为 7.58×10(-9)mol L(-1)、活度的 Nernst 斜率为 29.6 mV decade(-1)方面表现出最佳的电位特性。该传感器在 pH 值为 2.5-8.5 的范围内不受 pH 值影响。传感器的响应时间快,为 10s,在 4 个月的时间内可以使用,其电位特性没有明显变化。该传感器已用于实际样品中 Cd(2+)离子的监测,也可用作 EDTA 电位滴定法中 Cd(2+)离子的指示电极。

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