Towards greener batteries: sustainable components and materials for next-generation batteries

IF 9.2 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Green Chemistry Pub Date : 2024-07-01 DOI:10.1039/d3gc05027k
Palanivel Molaiyan , Shubhankar Bhattacharyya , Glaydson Simoes dos Reis , Rafal Sliz , Andrea Paolella , Ulla Lassi
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Abstract

Batteries are the main component of many electrical systems, and due to the elevated consumption of electric vehicles and portable electronic devices, they are the dominant and most rapidly growing energy storage technology. Consequently, they are set to play a crucial role in meeting the goal of cutting greenhouse gas emissions to achieve more sustainable societies. In this critical report, a rational basic-to-advanced compilation study of the effectiveness, techno-feasibility, and sustainability aspects of innovative greener manufacturing technologies and processes that deliver each battery component (anodes, cathodes, electrolytes, and separators) is accomplished, aiming to improve battery safety and the circularity of end-products. Special attention is given to biomass-derived anode materials and bio-based separators utilization that indicates excellent prospects considering green chemistry, greener binders, and energy storage applications. To fully reach this potential, one of the most promising ways to achieve sustainable batteries involves biomass-based electrodes and non-flammable and non-toxic electrolytes used in lithium-ion batteries and other chemistries, where the potential of a greener approach is highly beneficial, and challenges are addressed. The crucial obstacles related to the successful fabrication of greener batteries and potential future research directions are highlighted. Bridging the gap between fundamental and experimental research will provide critical insights and explore the potential of greener batteries as one of the frontrunners in the uptake of sustainability and value-added products in the battery markets of the future.

Abstract Image

实现更环保的电池:下一代电池的可持续组件和材料
电池是许多电气系统的主要组成部分,由于电动汽车和便携式电子设备的消耗量增加,电池成为最主要和发展最迅速的储能技术。因此,电池将在实现减少温室气体排放的目标方面发挥至关重要的作用,从而实现更可持续的社会发展。在这份重要报告中,对创新型绿色制造技术和工艺的有效性、技术可行性和可持续性进行了从基础到高级的合理汇编研究,这些技术和工艺可提供电池的每个组件(阳极、阴极、电解质和隔膜),旨在提高电池的安全性和最终产品的循环性。研究特别关注生物质衍生阳极材料和生物基隔膜的利用,这表明在绿色化学、更环保的粘合剂和储能应用方面具有极好的前景。为了充分发挥这一潜力,实现可持续电池的最有前途的方法之一是在锂离子电池和其他化学物质中使用生物质电极和不易燃、无毒的电解质,这种绿色方法的潜力是非常有益的,而且还能应对各种挑战。重点介绍了成功制造绿色电池的关键障碍和未来潜在的研究方向。弥合基础研究与实验研究之间的差距将提供重要的见解,并探索绿色电池的潜力,使其成为未来电池市场上可持续发展和高附加值产品的领跑者之一。
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来源期刊
Green Chemistry
Green Chemistry 化学-化学综合
CiteScore
16.10
自引率
7.10%
发文量
677
审稿时长
1.4 months
期刊介绍: Green Chemistry is a journal that provides a unique forum for the publication of innovative research on the development of alternative green and sustainable technologies. The scope of Green Chemistry is based on the definition proposed by Anastas and Warner (Green Chemistry: Theory and Practice, P T Anastas and J C Warner, Oxford University Press, Oxford, 1998), which defines green chemistry as the utilisation of a set of principles that reduces or eliminates the use or generation of hazardous substances in the design, manufacture and application of chemical products. Green Chemistry aims to reduce the environmental impact of the chemical enterprise by developing a technology base that is inherently non-toxic to living things and the environment. The journal welcomes submissions on all aspects of research relating to this endeavor and publishes original and significant cutting-edge research that is likely to be of wide general appeal. For a work to be published, it must present a significant advance in green chemistry, including a comparison with existing methods and a demonstration of advantages over those methods.
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