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一种阴极极化的基于聚苯胺的铅离子选择性电极:兼具抗生物污染能力并实现高稳定性

A cathodically polarized PANI-based lead ion-selective electrode: achieving high stability with antibiofouling capabilities.

作者信息

Liu Yanhua, Waterhouse Geoffrey I N, Jiang Xiaohui, Zhang Zhiming, Yu Liangmin

机构信息

Frontiers Science Center for Deep Ocean Multispheres and Earth System, and Key Laboratory of Marine Chemistry Theory and Technology, Ministry of Education, Ocean University of China, Qingdao, 266100, China.

School of Chemical Sciences, The University of Auckland, Auckland, 1142, New Zealand.

出版信息

Mikrochim Acta. 2024 Aug 6;191(9):517. doi: 10.1007/s00604-024-06581-0.

Abstract

Solid-state contact ion-selective electrodes (SC-ISEs) are an efficacious means of monitoring heavy metal contamination. Instability of the electrode potential is a key factor limiting their development, with biofouling in real water samples posing a significant challenge to maintaining stability. Therefore, addressing biofouling is crucial for optimizing solid-state ion-selective electrodes. In this work, high stability and antibiofouling capability in a solid-state contact lead ion-selective electrode (SC-Pb-ISE) based on polyaniline (PANI) was achieved through cathodic polarization. Specifically, PANI played a dual role in the ion-selective membrane (ISM) as an ion-to-electron transducer and antifouling agent. Given the excellent electrochemical performance of PANI, the prepared electrode (GC/PANI-Pb-ISM) demonstrated a remarkable antibiofouling efficiency of 98.2% under a cathodic polarization of -0.2 V. Furthermore, a standard deviation of standard potential (E) as low as ± 0.5 mV was realized successfully. The excellent chrono-potentiometric stability of 17.0 ± 2.9 μV/s was also demonstrated. The electrode maintained a Nernstian response slope of 30.7 ± 0.2 (R = 0.998) after applying a cathode potential (-0.2 V) for 30 min. The developed GC/PANI-Pb-ISM electrode is suitable for practical applications in real environmental water sample monitoring.

摘要

固态接触式离子选择电极(SC-ISEs)是监测重金属污染的有效手段。电极电位的不稳定性是限制其发展的关键因素,实际水样中的生物污染对维持稳定性构成了重大挑战。因此,解决生物污染问题对于优化固态离子选择电极至关重要。在这项工作中,通过阴极极化实现了基于聚苯胺(PANI)的固态接触式铅离子选择电极(SC-Pb-ISE)的高稳定性和抗生物污染能力。具体而言,聚苯胺在离子选择膜(ISM)中作为离子-电子转换器和防污剂发挥了双重作用。鉴于聚苯胺优异的电化学性能,制备的电极(GC/PANI-Pb-ISM)在-0.2 V的阴极极化下表现出98.2%的显著抗生物污染效率。此外,成功实现了标准电位(E)的标准偏差低至±0.5 mV。还证明了17.0±2.9 μV/s的优异计时电位稳定性。在施加-0.2 V阴极电位30分钟后,该电极保持了30.7±0.2(R = 0.998)的能斯特响应斜率。所开发的GC/PANI-Pb-ISM电极适用于实际环境水样监测的实际应用。

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