材料科学
热电效应
热电材料
平面的
热电发电机
刷子
热电冷却
光电子学
烧结
机械工程
纳米技术
曲面(拓扑)
工程物理
复合材料
计算机科学
热导率
几何学
物理
热力学
工程类
计算机图形学(图像)
数学
作者
Sung Hoon Park,Seungki Jo,Beomjin Kwon,Fredrick Kim,Hyeong Woo Ban,Ji Eun Lee,Da Hwi Gu,Se Hwa Lee,Younghun Hwang,Jin-Sang Kim,Dow‐Bin Hyun,Sukbin Lee,Kyoung Jin Choi,Wook Jo,Jae Sung Son
摘要
Output power of thermoelectric generators depends on device engineering minimizing heat loss as well as inherent material properties. However, the device engineering has been largely neglected due to the limited flat or angular shape of devices. Considering that the surface of most heat sources where these planar devices are attached is curved, a considerable amount of heat loss is inevitable. To address this issue, here, we present the shape-engineerable thermoelectric painting, geometrically compatible to surfaces of any shape. We prepared Bi2Te3-based inorganic paints using the molecular Sb2Te3 chalcogenidometalate as a sintering aid for thermoelectric particles, with ZT values of 0.67 for n-type and 1.21 for p-type painted materials that compete the bulk values. Devices directly brush-painted onto curved surfaces produced the high output power of 4.0 mW cm-2. This approach paves the way to designing materials and devices that can be easily transferred to other applications.
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