材料科学
制作
热电效应
热电材料
热电冷却
类型(生物学)
工程物理
纳米技术
光电子学
冶金
复合材料
热导率
热力学
工程类
医学
生态学
物理
替代医学
病理
生物
作者
Shibo Liu,Yongxin Qin,Yi Wen,Haonan Shi,Bingchao Qin,Tao Hong,Xiang Gao,Qian Cao,Cheng Chang,Li‐Dong Zhao
标识
DOI:10.1002/adfm.202315707
摘要
Abstract Thermoelectric cooling has gained much attention due to its significant application in 5G communication chip cooling. Enhancing the performance of thermoelectric cooling devices is an imminent and pressing concern. Applying the same material for both n ‐type and p ‐type components can promote the compatibility of thermoelectric cooling module due to their similar mechanical properties. This work focuses on the development of thermoelectric cooling module based on n ‐type and p ‐type PbTe ingots. The high ZT values near room temperature are achieved through fabricating PbTe ingots. This approach substantially enhances the carrier mobility by minimizing charge carrier scattering at grain boundaries compared to polycrystals. These optimized ingots are then utilized to construct a thermoelectric cooling device consisting of seven pairs of thermoelectric couples, which achieves a maximum cooling temperature difference of ≈14 K at room temperature and ≈28 K at 350 K. This study offers fresh insights into the development of thermoelectric cooling module using PbTe‐based materials.
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