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热电电沉积物综合综述:通过纳米工程提高热电性能

Comprehensive Review on Thermoelectric Electrodeposits: Enhancing Thermoelectric Performance Through Nanoengineering.

作者信息

Wu Tingjun, Kim Jiwon, Lim Jae-Hong, Kim Min-Seok, Myung Nosang V

机构信息

Shanghai Institute of Microsystem and Information Technology, Chinese Academy of Sciences, Shanghai, China.

Materials Science and Chemical Engineering Center, Institute for Advanced Engineering, Yongin-si, Korea.

出版信息

Front Chem. 2021 Dec 21;9:762896. doi: 10.3389/fchem.2021.762896. eCollection 2021.

Abstract

Thermoelectric devices based power generation and cooling systemsystem have lot of advantages over conventional refrigerator and power generators, becausebecause of solid-state devicesdevices, compact size, good scalability, nono-emissions and low maintenance requirement with long operating lifetime. However, the applications of thermoelectric devices have been limited owingowing to their low energy conversion efficiency. It has drawn tremendous attention in the field of thermoelectric materials and devices in the 21st century because of the need of sustainable energy harvesting technology and the ability to develop higher performance thermoelectric materials through nanoscale science and defect engineering. Among various fabrication methods, electrodeposition is one of the most promising synthesis methods to fabricate devices because of its ability to control morphology, composition, crystallinity, and crystal structure of materials through controlling electrodeposition parameters. Additionally, it is an additive manufacturing technique with minimum waste materials that operates at near room temperature. Furthermore, its growth rate is significantly higher ( a few hundred microns per hour) than the vacuum processes, which allows device fabrication in cost effective matter. In this paper, the latest development of various electrodeposited thermoelectric materials ( Te, PbTe, BiTe and their derivatives, BiSe, BiS, SbTe) in different forms including thin films, nanowires, and nanocomposites were comprehensively reviewed. Additionally, their thermoelectric properties are correlated to the composition, morphology, and crystal structure.

摘要

基于热电装置的发电和冷却系统相对于传统冰箱和发电机具有许多优势,这是由于其固态装置、紧凑的尺寸、良好的可扩展性、无排放以及低维护要求和长使用寿命。然而,热电装置的应用由于其低能量转换效率而受到限制。由于可持续能源收集技术的需求以及通过纳米科学和缺陷工程开发高性能热电材料的能力,在21世纪,它在热电材料和装置领域引起了极大的关注。在各种制造方法中,电沉积是制造装置最有前途的合成方法之一,因为它能够通过控制电沉积参数来控制材料的形态、组成、结晶度和晶体结构。此外,它是一种废料最少的增材制造技术,在接近室温的条件下运行。此外,它的生长速率明显高于真空工艺(每小时几百微米),这使得能够以具有成本效益的方式制造装置。本文全面综述了各种不同形式(包括薄膜、纳米线和纳米复合材料)的电沉积热电材料(碲、碲化铅、碲化铋及其衍生物、硒化铋、硫化铋、锑化碲)的最新进展。此外,它们的热电性能与组成、形态和晶体结构相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/856f/8725800/d4f7e61e4c2c/fchem-09-762896-g001.jpg

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