Center for Energy Materials, Department of Chemistry and iNANO, Aarhus University, DK-8000, Arhus C, Denmark.
Dalton Trans. 2010 Jan 28;39(4):978-92. doi: 10.1039/b916400f. Epub 2009 Dec 4.
Thermoelectric clathrates hold significant promise for high temperature applications with zT values exceeding 1.3. The inorganic clathrates have been shown to be both chemically and thermally stable at high temperatures, and high performance can be obtained from both single crystals and processed powders. The clathrates also show excellent compatibility factors in segmented module applications. For a materials chemist it is furthermore of great importance that the clathrates exhibit a very rich chemistry with the ability for substitution of many different elements. This allows delicate tuning of both the crystal structure as well as the physical properties. With all these assets, it is not surprising that clathrates have been intensely investigated in the thermoelectric community during the past decade. The present perspective provides a review of the many studies concerned with the synthesis, crystal structure and thermoelectric properties of clathrates with emphasis on the type I clathrate.
热电器件在高温应用中具有重要的应用前景,其 zT 值超过 1.3。已经证明无机笼合物在高温下具有化学和热稳定性,并且可以从单晶和处理后的粉末中获得高性能。笼合物在分段模块应用中也表现出优异的兼容性因素。对于材料化学家来说,更重要的是,笼合物具有非常丰富的化学性质,能够取代许多不同的元素。这允许对晶体结构和物理性质进行精细的调整。由于具有所有这些优势,在过去十年中,笼合物在热电领域受到了广泛的研究。本综述提供了对笼合物的合成、晶体结构和热电性能的许多研究的综述,重点介绍了 I 型笼合物。