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液态金属在传感中的新兴作用。

Emerging Role of Liquid Metals in Sensing.

机构信息

School of Chemical Engineering, University of New South Wales (UNSW), Sydney, New South Wales 2052, Australia.

出版信息

ACS Sens. 2022 Feb 25;7(2):386-408. doi: 10.1021/acssensors.1c02606. Epub 2022 Feb 4.

Abstract

Low melting point metals and alloys are the group of materials that combine metallic and liquid properties, simultaneously. The fascinating characteristics of liquid metals (LMs) including softness and high electrical and thermal conductivity, as well as their unique interfacial chemistry, have started to dominate various research disciplines. Utilization of LMs as responsive interfaces, enabling sensing in a flexible and versatile manner, is one of the most promising traits demonstrated for LMs. In the context of LMs-enabled sensors, gallium (Ga) and its alloys have emerged as multipurpose functional materials with many compelling physical and chemical properties. Responsiveness to different stimuli and easy-to-functionalize interfaces of Ga-based LMs make them ideal candidates for a variety of sensing applications. However, despite the vast capabilities of Ga-based LMs in sensing, applications of these materials for developing different sensors have not been fully explored. In the present review, we provide a comprehensive overview regarding the applications of Ga-based LMs in a wide range of sensing approaches that cover different physical and chemical sensors. The unique features of Ga-based LMs, which make them promising materials for sensing, are discussed in subsections followed by relevant case studies. Finally, challenges as well as the prospected future and developing motifs are highlighted for each type of LM-based sensors.

摘要

低熔点金属和合金是一组同时具有金属和液体特性的材料。液态金属(LM)的迷人特性,包括柔软性、高导电性和导热性,以及其独特的界面化学,已经开始主导各种研究学科。利用 LM 作为响应性界面,以灵活多样的方式进行感测,是 LM 展示的最有前途的特性之一。在 LM 实现的传感器中,镓(Ga)及其合金已成为具有许多引人注目的物理和化学特性的多用途功能材料。Ga 基 LM 对不同刺激的响应能力和易于功能化的界面使其成为各种传感应用的理想候选材料。然而,尽管 Ga 基 LM 在传感方面具有广泛的功能,但这些材料在开发各种传感器方面的应用尚未得到充分探索。在本综述中,我们全面概述了 Ga 基 LM 在涵盖不同物理和化学传感器的各种传感方法中的应用。Ga 基 LM 的独特特性使其成为传感的有前途的材料,在相关案例研究之后进行了讨论。最后,突出了每种 LM 基传感器的挑战以及预期的未来和发展主题。

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