热电材料
卡诺循环
余热
热电效应
光伏
硅
材料科学
工艺工程
工程物理
能量转换
热电发电机
功勋
能量转换效率
电
光伏系统
机械工程
光电子学
电气工程
工程类
热导率
热交换器
复合材料
物理
热力学
作者
Samantha Faye Duran Solco,Danwei Zhang,Wei Hong Lim,Jing Cao,Hongfei Liu,Qiang Zhu,Chee Pin Tan,Jianwei Xu,Xian Jun Loh,Ady Suwardi
出处
期刊:Crystals
[Multidisciplinary Digital Publishing Institute]
日期:2022-02-22
卷期号:12 (3): 307-307
被引量:12
标识
DOI:10.3390/cryst12030307
摘要
Thermoelectrics can convert waste heat to electricity and vice versa. The energy conversion efficiency depends on materials figure of merit, zT, and Carnot efficiency. Due to the higher Carnot efficiency at a higher temperature gradient, high-temperature thermoelectrics are attractive for waste heat recycling. Among high-temperature thermoelectrics, silicon-based compounds are attractive due to the confluence of light weight, high abundance, and low cost. Adding to their attractiveness is the generally defect-tolerant nature of thermoelectrics. This makes them a suitable target application for recycled silicon waste from electronic (e-waste) and solar cell waste. In this review, we summarize the usage of high-temperature thermoelectric generators (TEGs) in applications such as commercial aviation and space voyages. Special emphasis is placed on silicon-based compounds, which include some recent works on recycled silicon and their thermoelectric properties. Besides materials design, device designing considerations to further maximize the energy conversion efficiencies are also discussed. The insights derived from this review can be used to guide sustainable recycling of e-waste into thermoelectrics for power harvesting.
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