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Advances in Atomic Layer Deposition (ALD) Nanolaminate Synthesis of Thermoelectric Films in Porous Templates for Improved Seebeck Coefficient

机译:改善塞贝克系数的多孔模板中原子层沉积(ALD)纳米层压板热电薄膜合成的研究进展

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摘要

Thermoelectrics is a green renewable energy technology which can significantly contribute to power generation due to its potential in generating electricity out of waste heat. The main challenge for the development of thermoelectrics is its low conversion efficiency. One key strategy to improve conversion efficiency is reducing the thermal conductivity of thermoelectric materials. In this paper, the state-of-the-art progresses made in improving thermoelectric materials are reviewed and discussed, focusing on phononic engineering via applying porous templates and ALD deposited nanolaminates structure. The effect of nanolaminates structure and porous templates on Seebeck coefficient, electrical conductivity and thermal conductivity, and hence in figure of merit zT of different types of materials system, including PnCs, lead chalcogenide-based nanostructured films on planar and porous templates, ZnO-based superlattice, and hybrid organic-inorganic superlattices, will be reviewed and discussed.
机译:热电是一种绿色的可再生能源技术,由于它具有利用余热发电的潜力,因此可以极大地促进发电。热电学发展的主要挑战是其低转换效率。改善转化效率的一项关键策略是降低热电材料的导热系数。本文对改进热电材料的最新进展进行了回顾和讨论,重点是通过应用多孔模板和ALD沉积的纳米层状结构进行声子工程。纳米层压板结构和多孔模板对塞贝克系数,电导率和导热率的影响,因此在不同类型的材料系统中的品质因数zT,包括PnC,平面和多孔模板上基于硫属元素化物的纳米结构薄膜,ZnO基超晶格和有机-无机混合超晶格将得到审查和讨论。

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