石墨烯基过渡金属氧化物作为可充电锂离子电池阳极材料的最新趋势

Kefayat Ullah , Noreen Shah , Reshma Wadood , Bakht Mand Khan , Won Chun Oh
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引用次数: 6

摘要

世界正在寻找利用化石和可再生能源生产智能绿色能源。在这方面,生产和储存是保持能源生产和消耗平衡的关键因素。电池被认为是这些能源中最重要的组成部分之一。目前,许多电子产品和电动汽车都是由电池供电的。锂离子电池目前面临着一些限制,阻碍了电池技术的发展。锂金属最近出现了,但具有高度腐蚀性,如灾难性的枝晶、为保持阴极和阳极之间的接触而产生的压力等。尽管最近有许多新的复合材料被报道来解决许多提到的问题。近年来,碳及其衍生物被发现是LIBs的最佳阳极材料。已经尝试增强LIB的功能性和耐久性,因为它们的普遍性预计会提高。在这篇综述中,我们考虑了以石墨烯为阳极材料的过渡金属氧化物,并讨论了LIBs制备的各种进展。研究人员已经证明,可以在LIBs的阳极中添加一种特殊的石墨烯复合材料,以显著提高其操作稳定性,从而开发出更有效、更持久的LIBs。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Recent trends in graphene based transition metal oxides as anode materials for rechargeable lithium-ion batteries

The world is looking for the production of smart and green energy from fossils and renewable energy resources. In this regard the production and storage are the key factor for marinating the balance in energy production and consumption. Batteries are considered to be one of the most important components in these energy resources. Presently many electronics and electric vehicles are powered by batteries. Lithium-ion batteries (LIBs) have currently faced a few limitations deterring the development in battery technologies. Lithium metals emerge recently, but highly corrosive, the catastrophic dendrites, the pressure induced in order to maintain the contact between cathode and anode etc. Though there are many new composite materials reported recently to address many of the mention issues. Recently carbon and its derivative has been found to be the best anode materials for LIBs. An attempt has been made to enhance the functionality and durability of LIBs, because their pervasiveness is expected to rise. In this review we consider transition metal oxides with graphene as anode material and discussed various development towards the fabrication of LIBs. Researchers have demonstrated that a particular graphene composite can be added to the anode of LIBs to dramatically improve its operational stability, allowing for the development of significantly more potent, long-lasting LIBs.

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