热电效应
碲化铋
热电材料
材料科学
纳米技术
碲化物
热电发电机
工程物理
锡
光电子学
电
余热
冶金
电气工程
热导率
机械工程
复合材料
工程类
物理
热交换器
热力学
标识
DOI:10.1021/cen-09615-scicon9
摘要
A curious combination of thermal and electrical properties endows thermoelectric materials with the ability to interconvert heat and electricity. For decades, these solids have supplied power and cooling needs for specialty devices. Manufacturers are now developing thermoelectric devices to convert waste heat in engine exhaust to electricity. Yet these devices are not very common, in part because only a handful of materials, including alloys of bismuth telluride and a few lead compounds, work well in applications. Tin selenide recently showed itself to be a strong candidate, but only when prepared as thick single crystals. Xuan P. A. Gao knew that SnSe has a layered structure similar to graphene and other 2-D materials, suggesting it could be made in ultrathin nanostructured form, a first step toward miniaturizing thermoelectric devices. So the Case Western Reserve University physicist and coworkers developed a vapor deposition method for growing individual SnSe nanoflakes and thin films
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