Current and future prospects of Li-ion batteries: A review

A. Ghafari
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Abstract

In contemporary society, Li-ion batteries have emerged as one of the primary energy storage options. Li-ion batteries’ market share and specific applications have grown significantly over time and are still rising. Many outstanding scientists and engineers worked very hard on developing commercial Li-ion batteries in the 1990s, which led to their success. An aqueous or non-aqueous electrolyte, an anode, a cathode, and a membrane that separates the two while permitting ions through are the four essential components of all battery systems. While still underutilized in power supply systems, Li-ion batteries are the preferred solution for the developing electric car industry, particularly when combined with photovoltaics and wind power. As a technological advancement, Li-ion batteries provide enormous worldwide potential for sustainable energy production and significant carbon emission reductions. This review covers the working principles, anode, cathode, and electrolyte materials and the related mechanisms, aging and performance degradation, applications, manufacturing processes, market, recycling, and safety of Li-ion batteries.
锂离子电池研究现状与展望
在当代社会,锂离子电池已成为主要的储能选择之一。随着时间的推移,锂离子电池的市场份额和具体应用已经显著增长,并且仍在上升。20世纪90年代,许多杰出的科学家和工程师在开发商用锂离子电池方面付出了巨大的努力,并取得了成功。水或非水电解质、阳极、阴极以及将两者分开并允许离子通过的膜是所有电池系统的四个基本组成部分。虽然锂离子电池在电力供应系统中仍未得到充分利用,但它是发展中的电动汽车行业的首选解决方案,特别是在与光伏和风能结合使用时。作为一项技术进步,锂离子电池在全球范围内为可持续能源生产和显著的碳减排提供了巨大的潜力。综述了锂离子电池的工作原理、阳极、阴极、电解质材料及其机理、老化与性能退化、应用、制造工艺、市场、回收利用、安全性等方面的研究进展。
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