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用于能量转换和存储的定向纳米结构。

Oriented nanostructures for energy conversion and storage.

作者信息

Liu Jun, Cao Guozhong, Yang Zhenguo, Wang Donghai, Dubois Dan, Zhou Xiaodong, Graff Gordon L, Pederson Larry R, Zhang Ji-Guang

机构信息

Pacific Northwest National Laboratory, Richland, WA 99352, USA.

出版信息

ChemSusChem. 2008;1(8-9):676-97. doi: 10.1002/cssc.200800087.

Abstract

Recently, the role of nanostructured materials in addressing the challenges in energy and natural resources has attracted wide attention. In particular, oriented nanostructures demonstrate promising properties for energy harvesting, conversion, and storage. In this Review, we highlight the synthesis and application of oriented nanostructures in a few key areas of energy technologies, namely photovoltaics, batteries, supercapacitors, and thermoelectrics. Although the applications differ from field to field, a common fundamental challenge is to improve the generation and transport of electrons and ions. We highlight the role of high surface area to maximize the surface activity and discuss the importance of optimum dimension and architecture, controlled pore channels, and alignment of the nanocrystalline phase to optimize the transport of electrons and ions. Finally, we discuss the challenges in attaining integrated architectures to achieve the desired performance. Brief background information is provided for the relevant technologies, but the emphasis is focused mainly on the nanoscale effects of mostly inorganic-based materials and devices.

摘要

最近,纳米结构材料在应对能源和自然资源挑战方面的作用引起了广泛关注。特别是,定向纳米结构在能量收集、转换和存储方面展现出了有前景的特性。在本综述中,我们重点介绍了定向纳米结构在能源技术的几个关键领域,即光伏、电池、超级电容器和热电学中的合成与应用。尽管不同领域的应用有所不同,但一个共同的基本挑战是改善电子和离子的产生与传输。我们强调高比表面积在最大化表面活性方面的作用,并讨论最佳尺寸和结构、可控孔道以及纳米晶相排列对于优化电子和离子传输的重要性。最后,我们讨论了实现集成架构以达到预期性能所面临的挑战。文中提供了相关技术的简要背景信息,但重点主要集中在大多数无机基材料和器件的纳米尺度效应上。

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