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硒化锡在热电应用中的发展策略概述

An Overview of the Strategies for Tin Selenide Advancement in Thermoelectric Application.

作者信息

Md Aspan Rosnita, Fatima Noshin, Mohamed Ramizi, Syafiq Ubaidah, Ibrahim Mohd Adib

机构信息

Solar Energy Research Institute (SERI), Universiti Kebangsaan Malaysia, Bangi 43600, Selangor, Malaysia.

Department of Electrical, Electronics and System Engineering, Faculty of Engineering and Built Environment, Universiti Kebangsaan Malaysia, Bangi 43600, Selangor, Malaysia.

出版信息

Micromachines (Basel). 2021 Nov 27;12(12):1463. doi: 10.3390/mi12121463.

Abstract

Chalcogenide, tin selenide-based thermoelectric (TE) materials are Earth-abundant, non-toxic, and are proven to be highly stable intrinsically with ultralow thermal conductivity. This work presented an updated review regarding the extraordinary performance of tin selenide in TE applications, focusing on the crystal structures and their commonly used fabrication methods. Besides, various optimization strategies were recorded to improve the performance of tin selenide as a mid-temperature TE material. The analyses and reviews over the methodologies showed a noticeable improvement in the electrical conductivity and Seebeck coefficient, with a noticeable decrement in the thermal conductivity, thereby enhancing the tin selenide figure of merit value. The applications of SnSe in the TE fields such as microgenerators, and flexible and wearable devices are also discussed. In the future, research in low-dimensional TE materials focusing on nanostructures and nanocomposites can be conducted with the advancements in material science technology as well as microtechnology and nanotechnology.

摘要

基于硫族化物、硒化锡的热电(TE)材料在地壳中储量丰富、无毒,并且已被证明本质上具有高度稳定性,热导率极低。这项工作对硒化锡在热电应用中的卓越性能进行了更新综述,重点关注其晶体结构及其常用制备方法。此外,记录了各种优化策略以提高硒化锡作为中温热电材料的性能。对这些方法的分析和综述表明,电导率和塞贝克系数有显著提高,热导率显著降低,从而提高了硒化锡的优值。还讨论了硒化锡在微型发电机以及柔性和可穿戴设备等热电领域的应用。未来,随着材料科学技术以及微技术和纳米技术的进步,可以开展针对纳米结构和纳米复合材料的低维热电材料研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4816/8709453/d2f194eef550/micromachines-12-01463-g001.jpg

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