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纳米结构热电材料:小尺寸带来高效率提升。

Nanostructured thermoelectrics: big efficiency gains from small features.

机构信息

SiOnyx, Inc., Beverly, MA 01801, USA.

出版信息

Adv Mater. 2010 Sep 22;22(36):3970-80. doi: 10.1002/adma.201000839.

Abstract

The field of thermoelectrics has progressed enormously and is now growing steadily because of recently demonstrated advances and strong global demand for cost-effective, pollution-free forms of energy conversion. Rapid growth and exciting innovative breakthroughs in the field over the last 10-15 years have occurred in large part due to a new fundamental focus on nanostructured materials. As a result of the greatly increased research activity in this field, a substantial amount of new data--especially related to materials--have been generated. Although this has led to stronger insight and understanding of thermoelectric principles, it has also resulted in misconceptions and misunderstanding about some fundamental issues. This article sets out to summarize and clarify the current understanding in this field; explain the underpinnings of breakthroughs reported in the past decade; and provide a critical review of various concepts and experimental results related to nanostructured thermoelectrics. We believe recent achievements in the field augur great possibilities for thermoelectric power generation and cooling, and discuss future paths forward that build on these exciting nanostructuring concepts.

摘要

热电领域取得了巨大进展,由于最近展示的进展和全球对经济高效、无污染的能源转换形式的强烈需求,该领域正稳步增长。由于对纳米结构材料的新的基础关注,过去 10-15 年,该领域取得了快速增长和令人兴奋的创新突破。由于该领域的研究活动大大增加,产生了大量新的数据——尤其是与材料相关的数据。尽管这导致了对热电原理的更深入的认识和理解,但也导致了对一些基本问题的误解和误解。本文旨在总结和澄清该领域目前的理解;解释过去十年中报道的突破的基础;并对与纳米结构热电相关的各种概念和实验结果进行批判性评价。我们相信,该领域的最新成果为热电发电和冷却带来了巨大的可能性,并讨论了基于这些令人兴奋的纳米结构概念的未来发展方向。

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