热离子能量转换:纳米技术的基本原理和最新进展

A. Nojeh
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引用次数: 2

摘要

热离子能量转换代表了一种简单而优雅的方法来收集热量来发电。这种转化机制已经被发现了一个多世纪,并经历了几次研究和开发的兴趣浪潮。然而,与材料特性和制造技术相关的重大挑战阻碍了高效实用设备的创造,阻碍了这一概念的广泛采用。在本报告中,将回顾热离子能量转换的基本原理,并讨论影响转换器性能的参数。我们将简要介绍一些过去的设备示例,并强调它们面临的挑战。在过去的二十年中,由于材料和制造工艺的进步,对热电子能转换的兴趣逐渐重新浮出水面,这为解决该领域长期存在的挑战提供了机会。本文将描述最近的几个关键发展,并讨论当前的现状和未来的展望。我们将看到,新的效应和纳米材料有时需要比过去常用的更复杂的实验方法来研究它们的热离子发射和转换的基本特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thermionic Energy Conversion:Fundamentals and Recent Progress Enabled by Nanotechnology
Thermionic energy conversion represents a simple and elegant approach for harvesting heat to generate electricity. This conversion mechanism has been known for over a century and has experienced several waves of interest in research and development. However, significant challenges related to materials properties and fabrication technologies have prevented the creation of efficient and practical devices, hindering broad adoption of this concept.In this presentation, the fundamentals of thermionic energy conversion will be reviewed and the parameters affecting converter performance discussed. Some of the past device examples will be briefly looked at and their challenges highlighted. Over the last two decades, interest in thermionic energy conversion has gradually resurfaced due to the advances in materials and fabrication processes, which have provided opportunities for addressing the long -standing challenges in this field. Several of the key recent developments will be described and the current status and future outlook discussed. It will be seen that new effects and nanomaterials sometimes necessitate a more sophisticated experimental approach to the study of their fundamental properties for thermionic emission and conversion than commonly used in the past.
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