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基于氧化钨基纳米材料构建的电化学能量装置的进展。

Advances in Electrochemical Energy Devices Constructed with Tungsten Oxide-Based Nanomaterials.

作者信息

Han Wenfang, Shi Qian, Hu Renzong

机构信息

Guangdong Provincial Key Laboratory of Advanced Energy Storage Materials, School of Materials Science and Engineering, South China University of Technology, Guangzhou 510640, China.

The Key Lab of Guangdong for Modern Surface Engineering Technology, National Engineering Laboratory for Modern Materials Surface Engineering Technology, Institute of New Materials, Guangdong Academy of Sciences, Guangzhou 510651, China.

出版信息

Nanomaterials (Basel). 2021 Mar 10;11(3):692. doi: 10.3390/nano11030692.

Abstract

Tungsten oxide-based materials have drawn huge attention for their versatile uses to construct various energy storage devices. Particularly, their electrochromic devices and optically-changing devices are intensively studied in terms of energy-saving. Furthermore, based on close connections in the forms of device structure and working mechanisms between these two main applications, bifunctional devices of tungsten oxide-based materials with energy storage and optical change came into our view, and when solar cells are integrated, multifunctional devices are accessible. In this article, we have reviewed the latest developments of tungsten oxide-based nanostructured materials in various kinds of applications, and our focus falls on their energy-related uses, especially supercapacitors, lithium ion batteries, electrochromic devices, and their bifunctional and multifunctional devices. Additionally, other applications such as photochromic devices, sensors, and photocatalysts of tungsten oxide-based materials have also been mentioned. We hope this article can shed light on the related applications of tungsten oxide-based materials and inspire new possibilities for further uses.

摘要

基于氧化钨的材料因其在构建各种能量存储设备方面的多种用途而备受关注。特别是,它们的电致变色器件和光学变色器件在节能方面得到了深入研究。此外,基于这两种主要应用在器件结构和工作机制形式上的紧密联系,基于氧化钨的具有能量存储和光学变化功能的双功能器件进入了我们的视野,并且当与太阳能电池集成时,多功能器件也应运而生。在本文中,我们综述了基于氧化钨的纳米结构材料在各种应用中的最新进展,我们的重点在于它们与能量相关的用途,特别是超级电容器、锂离子电池、电致变色器件以及它们的双功能和多功能器件。此外,还提到了基于氧化钨材料的其他应用,如光致变色器件、传感器和光催化剂。我们希望本文能够为基于氧化钨材料的相关应用提供启示,并激发进一步应用的新可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/be49/8000231/46cc14eac634/nanomaterials-11-00692-g001.jpg

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