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Advances on Aryldiazonium Salt Chemistry Based Interfacial Fabrication for Sensing Applications

机译:基于Aryldiazonium Salt Chemistic的界面制造对传感应用的研究进展

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摘要

Aryldiazonium salts as coupling agents for surface chemistry have evidenced their wide applications for the development of sensors. Combined with advances in nanomaterials, current trends in sensor science and a variety of particular advantages of aryldiazonium salt chemistry in sensing have driven the aryldiazonium salt-based sensing strategies to grow at an astonishing pace. This review focuses on the advances in the use of aryldiazonium salts for modifying interfaces in sensors and biosensors during the past decade. It will first summarize the current methods for modification of interfaces with aryldiazonium salts, and then discuss the sensing applications of aryldiazonium salts modified on different transducers (bulky solid electrodes, nanomaterials modified bulky solid electrodes, and nanoparticles). Finally, the challenges and perspectives that aryldiazonium salt chemistry is facing in sensing applications are critically discussed.
机译:Aryldiazonium Salts作为表面化学的偶联剂已经证明了它们广泛的传感器的开发应用。 结合纳米材料的进展,传感器科学的当前趋势以及阿米德唑鎓盐化学在传感中的各种特殊优点使得基于阿里德唑基盐的传感策略以惊人的速度增长。 本综述重点介绍在过去十年中使用Aryldiazium Salts用于改变传感器和生物传感器的界面的进展。 首先将其总结当前用于改性与阿里德二氮鎓盐的接口的方法,然后讨论在不同换能器(庞大固体电极,纳米材料改性庞大固体电极和纳米粒子)上改性的芳基氮盐的感测应用。 最后,挑战和观点在传感应用中面临着感应应用的挑战和观点是批判性的。

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