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Semiconductor clathrates: a pgec system with potential for thermoelectric applications

机译:半导体材料:具有热电应用潜力的pgec系统

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摘要

An investigation into the s tructural, chemical, electronic, and themral properties of polycrystalline semiconductor clatherate compounds with different "guest" ions in the viods of these structures is presently underway by the author and his colleges. Despite the wellpdefined crystalline structure of these semiconductor materials, the thermal conductivity shows a magnitude and temperature dependence more typical of amorphous materials than crystalline materials. The localizaed low fequency vigrations of these "guest" ions is believed to interact with the acoustic phonons of the host lattice resulting in a very low thermal conductivity. Indeed in the case of Ge-clathrates a "glass-like" thermal conductivity was observed. The markedly low thermal conductivity displayed by these semiconductor materials. along with the high power factors, demonstrates the potential of this material system for thermoelectric applications.
机译:作者和他的学院目前正在研究这些结构中具有不同“客体”离子的多晶半导体盐酸盐化合物的结构,化学,电子和金属性质。尽管这些半导体材料具有良好定义的晶体结构,但是热导率显示出比晶体材料更典型的非晶材料的幅度和温度依赖性。这些“客体”离子的局部低频行进被认为与主体晶格的声子相互作用,从而导致非常低的热导率。实际上,在Ge-clathrates的情况下,观察到“玻璃状”的热导率。这些半导体材料显示出明显较低的热导率。加上高功率因数,证明了该材料系统在热电应用中的潜力。

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