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通过正交金属配位和主客体相互作用形成的用于电子温度计的热敏超分子配位络合物。

Thermal-Sensitive Supramolecular Coordination Complex Formed by Orthogonal Metal Coordination and Host-Guest Interactions for an Electrical Thermometer.

作者信息

Yan Miaomiao, Bao Yinglong, Li Sen, Liao Shenglong, Yin Shouchun

机构信息

Key Laboratory of Organosilicon Chemistry and Materials Technology of Ministry of Education, College of Materials, Chemistry and Chemical Engineering, Hangzhou Normal University, Hangzhou 311121, P. R. China.

School of Engineering, Hangzhou Normal University, Hangzhou 311121, P. R. China.

出版信息

ACS Macro Lett. 2024 Jul 16;13(7):834-840. doi: 10.1021/acsmacrolett.4c00357. Epub 2024 Jun 24.

Abstract

Supramolecular coordination complexes (SCCs) are popular for their structural diversity and functional adaptability, which make them suitable for a wide range of applications. Photophysical and mechanical performance of SCCs are the most attractive characteristics, yet their ionically conductive behavior and potential in electrical sensing have been rarely investigated. This study reports a well-designed SCC that integrates orthogonal metal coordination and host-guest interactions to achieve sensitive electrical thermal sensing. Owing to the thermodynamic nature of the host-guest interaction, the SCC encounters thermally induced disassembly, leading to significantly enhanced ion mobility and thus allowing for the precise detection of minor temperature variation. The SCC-based thermometer is then fabricated with the assistance of 3D printing and demonstrates good accuracy and reliability in monitoring human skin temperature and real-time temperature changes of mouse during the whole anesthesia and recovery process. Our findings provide an innovative strategy for developing electrical thermometers and expand the current application scope of SCCs in electrical sensing.

摘要

超分子配位络合物(SCCs)因其结构多样性和功能适应性而备受青睐,这使其适用于广泛的应用。SCCs的光物理和机械性能是最具吸引力的特性,然而它们的离子传导行为及其在电传感方面的潜力却鲜有研究。本研究报告了一种精心设计的SCC,它整合了正交金属配位和主客体相互作用,以实现灵敏的电热传感。由于主客体相互作用的热力学性质,该SCC会发生热诱导解离,导致离子迁移率显著提高,从而能够精确检测微小的温度变化。然后,借助3D打印制造出基于SCC的温度计,该温度计在监测人体皮肤温度以及小鼠在整个麻醉和恢复过程中的实时温度变化方面显示出良好的准确性和可靠性。我们的研究结果为开发电子温度计提供了一种创新策略,并扩展了SCCs在电传感方面的当前应用范围。

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