首页> 外文会议>Symposium on Thermoelectric Materials 2001―Research and Applications, Nov 26-29, 2001, Boston, Massachusetts, U.S.A. >Overview of Various Strategies and Promising New Bulk Materials for Potential Thermoelectric Applications
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Overview of Various Strategies and Promising New Bulk Materials for Potential Thermoelectric Applications

机译:潜在热电应用的各种策略和新的散装材料的概述

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Recently, there has been a renewed interest in thermoelectric material research. There are a number of different systems of potential thermoelectric (TE) materials that are under investigation by various research groups. Some of these research efforts focus on minimizing lattice thermal conductivity while other efforts focus on materials that exhibit large power factors. An overview of some of the requirements and strategies for the investigation and optimization of a new system of materials for potential thermoelectric applications will be discussed. Some of the newer concepts such as low-dimensional systems and Slack's phonon-glass, electron-crystal concept will be discussed. Current strategies for minimizing lattice thermal conductivity and also minimum requirements for thermopower will be presented. The emphasis of this paper will be to identify some of the more recent promising bulk materials and discuss the challenges and issues related to each. This paper is targeted more at "newcomers" to the field and does not discuss some of the very interesting results that are being reported in the thin film and superlattice materials. Some of the bulk materials which will be discussed include complex chalcogenides (e.g.CsBi4Te6 and pentatellurides such as the Zr_(1-X)Hf_XTe_5 system), half-Heusler alloys (e.g. TiNiSn_(1-X)Sb_X), ceramic oxides (NaCo_4O_2), skutterudites (e.g. Yb_XCo_(4-X)Sb_(12) or Eu_XCo_(4-X)Sb_(12)) and clathrates (e.g. Sr_8Ga_(16)Ge_(30)). Each of these systems is distinctly different yet each exhibits some prospect as a potential thermoelectric material. Results will be presented and discussed on each system of materials.
机译:最近,对热电材料的研究有了新的兴趣。各个研究小组正在研究多种潜在的热电(TE)材料系统。这些研究工作中的一些集中在使晶格导热率最小化上,而其他工作集中在表现出大功率因数的材料上。将讨论对潜在热电应用的新材料系统进行研究和优化的一些要求和策略的概述。将讨论一些较新的概念,例如低维系统和Slack的声子玻璃,电子晶体概念。将提出使晶格热导率最小化的当前策略以及对热电的最低要求。本文的重点将是确定一些较新的有前途的散装材料,并讨论与每种材料相关的挑战和问题。本文主要针对该领域的“新手”,而没有讨论薄膜和超晶格材料中报道的一些非常有趣的结果。将要讨论的一些块状材料包括复杂的硫族化物(例如CsBi4Te6和五碲化物,例如Zr_(1-X)Hf_XTe_5系统),半霍斯勒合金(例如TiNiSn_(1-X)Sb_X),陶瓷氧化物(NaCo_4O_2) ,方钴矿(例如Yb_XCo_(4-X)Sb_(12)或Eu_XCo_(4-X)Sb_(12))和包合物(例如Sr_8Ga_(16)Ge_(30))。这些系统中的每一个都明显不同,但作为潜在的热电材料,它们都具有一定的前景。将在每种材料系统上展示和讨论结果。

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