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半赫斯勒热电材料:一类复杂的材料。

Half-Heusler thermoelectrics: a complex class of materials.

作者信息

Bos Jan-Willem G, Downie Ruth A

机构信息

Institute of Chemical Sciences and Centre for Advanced Energy Storage and Recovery, School of Engineering and Physical Sciences, Heriot-Watt University, Edinburgh, EK14 4AS, UK.

出版信息

J Phys Condens Matter. 2014 Oct 29;26(43):433201. doi: 10.1088/0953-8984/26/43/433201. Epub 2014 Oct 2.

Abstract

Half-Heusler thermoelectrics first attracted interest in the late-1990s and are currently undergoing a renaissance. This has been driven by improved synthesis, processing and characterisation methods, leading to increases in the thermoelectric figure of merit and the observation of novel phenomena such as carrier filtering in nanocomposite samples. The difficulty in extracting good thermoelectric performance is at first glance surprising given the relative simplicity of the ideal crystal structure with only site occupancies and lattice parameter as crystallographic variables. However, the observed thermoelectric properties are found to depend sensitively on sample processing. Recent work has shown that prepared ingots can contain a range of inhomogeneities, including interstitials, nano- and micron sized Heusler inclusions and multiple half-Heusler phases. For this reason, the prepared materials are far more complex than initially appreciated and this may offer opportunities to enhance the thermoelectric figure of merit.

摘要

半赫斯勒热电材料在20世纪90年代末首次引起关注,目前正经历复兴。这是由合成、加工和表征方法的改进推动的,导致热电优值增加,并观察到诸如纳米复合样品中的载流子过滤等新现象。鉴于理想晶体结构相对简单,仅以占位和晶格参数作为晶体学变量,提取良好的热电性能存在困难,这乍一看令人惊讶。然而,观察到的热电性能对样品加工敏感。最近的研究表明,制备的铸锭可能包含一系列不均匀性,包括间隙原子、纳米和微米尺寸的赫斯勒夹杂物以及多个半赫斯勒相。因此,制备的材料比最初认为的要复杂得多,这可能为提高热电优值提供机会。

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