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近年来固体接触离子选择性电极的进展:功能材料、传感机制和发展趋势。

Recent advances in solid-contact ion-selective electrodes: functional materials, transduction mechanisms, and development trends.

机构信息

Laboratory of Agricultural Information Intelligent Sensing, School of Biosystems Engineering and Food Science, Zhejiang University, Hangzhou, Zhejiang 310058, China.

出版信息

Chem Soc Rev. 2020 Jul 6;49(13):4405-4465. doi: 10.1039/c9cs00587k.

Abstract

From environmental monitoring to point-of-care biofluid analysis, rapid ion determination requires robust analytical tools. In recent years, driven by the development of materials science and processing technology, solid-contact ion-selective electrodes (SC-ISEs) with high-performance functional materials and creative structures have shown great potential for routine and portable ion detection. In particular, the introduction of nanomaterials as ion-to-electron transducers and the adoption of different performance enhancement strategies have significantly promoted the development of SC-ISEs. Besides, with the increasing miniaturization, flexibility, and dependability of SC-ISEs, this field has gradually begun to evolve from conventional potentiometric ion sensing to integrated sensing systems with broader application scenarios. This comprehensive review covers pioneering research on functional materials and state-of-the-art technologies for the construction of SC-ISEs, with an emphasis on new development trends and applications.

摘要

从环境监测到即时生物流体分析,快速离子测定需要强大的分析工具。近年来,受材料科学和加工技术发展的推动,具有高性能功能材料和创新结构的固态接触离子选择性电极(SC-ISE)在常规和便携式离子检测方面显示出巨大的潜力。特别是,将纳米材料作为离子-电子转换器引入,以及采用不同的性能增强策略,极大地推动了 SC-ISE 的发展。此外,随着 SC-ISE 的小型化、灵活性和可靠性的提高,该领域已逐渐从传统的电位离子传感发展为具有更广泛应用场景的集成传感系统。本综述涵盖了用于构建 SC-ISE 的功能材料和最新技术的开创性研究,重点介绍了新的发展趋势和应用。

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