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Exploring Thallium Compounds, Chevrel Phases, and Other Chalcogenides as Thermoelectric Materials

机译:探索T化合物,Chevrel相和其他硫族化物作为热电材料

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摘要

In thermoelectric materials, the coupling between thermal and electrical currents allows for the direct conversion between heat and electricity. This makes possible the construction of refrigerators and electrical power generators with no moving parts which are compact, reliable, and vibration free. Devices made from the best materials for cooling near room temperature operate at only 10% of Carnot efficiency. This is significantly less efficient than a typical compressor based kitchen refrigerator, which operates at about 30% of the Carnot limit. Thermoelectric devices are currently used where the benefits of small size and/or dependability outweigh their cost in efficiency. It is clear that the development of widespread applications for thermoelectric devices must await the discovery of new materials with improved thermoelectric properties. In this dissertation, several experimental approaches to this problem are discussed. These include (1) new compounds containing the heavy element thallium, (2) the exploration of Chevrel phase materials for high temperature applications, (3) the search for new high symmetry materials, and (4) the chemical and physical manipulation of the properties of known thermoelectric materials. The investigations described in this work did not produce an improved thermoelectric material; however, they did lead to the discovery and characterization of many new compounds, some with interesting structural, electrical, and magnetic properties.
机译:在热电材料中,热和电流之间的耦合允许热和电之间的直接转换。这使得冰箱和发电机的结构没有紧凑,可靠和无振动的运动部件成为可能。用最好的材料制成的设备可在室温附近冷却,其工作效率仅为卡诺效率的10%。这比典型的基于压缩机的厨房冰箱效率低得多,后者的工作温度约为卡诺极限的30%。当前使用热电装置,其中小尺寸和/或可靠性的益处超过其效率成本。显然,热电设备的广泛应用的发展必须等待发现具有改善的热电特性的新材料。本文讨论了解决该问题的几种实验方法。其中包括(1)含有重元素th的新化合物,(2)探索用于高温应用的Chevrel相材料,(3)寻找新的高对称性材料,以及(4)化学和物理操作性能已知的热电材料。这项工作中描述的研究并未产生改进的热电材料。然而,它们确实导致了许多新化合物的发现和表征,其中一些具有有趣的结构,电学和磁学性质。

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    McGuire Michael;

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  • 年度 2006
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  • 原文格式 PDF
  • 正文语种 en_US
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