用二维材料推进电动汽车摩擦学的前沿发展--重要视角

IF 31.6 1区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY
Diana Berman , Leonardo Israel Farfan-Cabrera , Andreas Rosenkranz , Ali Erdemir
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引用次数: 0

摘要

电动汽车(EV)具有更高的能效和环保性,因此最近已被定位为传统内燃机汽车的最可持续替代品之一。然而,电动汽车仍然面临着许多挑战(如润滑、热管理、电气兼容性和腐蚀等),这些挑战可能会影响电动汽车的性能、效率和可靠性,从而影响电动汽车的长期可持续发展。二维(2D)材料具有令人印象深刻的多功能特性,包括不寻常的热学、电学和摩擦学特性,可对电动汽车的平稳、安全、高效和持久运行产生有益影响。因此,我们从这个角度总结了与二维材料有关的最新发展,这些材料可以协同解决摩擦学、电学和热学管理问题,从而使未来的电动汽车具有卓越的性能、效率和可靠性。我们希望,二维材料所具有的突出特性能促使更多的研究人员朝着这个方向努力,最终为子孙后代开发出一种基于电动汽车的绿色、可持续的未来交通方式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Advancing the frontiers of EV tribology with 2D materials – A critical perspective

Because of their higher energy efficiency and environmental friendliness, electrical vehicles (EVs) have recently positioned themselves as one of the most sustainable alternatives to traditional combustion engine vehicles. However, there remain numerous challenges (i.e., lubrication, thermal management, electrical compatibility, and corrosion, among others) that can hamper their performance, efficiency, and reliability, and hence the sustainability of EVs in the long run. Two-dimensional (2D) materials offer impressive multi-functional characteristics, including unusual thermal, electrical, and tribological properties which can beneficially impact the smooth, safe, efficient, and long-lasting operation of EVs. Therefore, in this perspective, we summarize the most recent developments related to 2D materials which can synergistically address tribological, electrical, and thermal management issues and thus enable superior performance, efficiency, and reliability in future EVs. We hope that the highlighted remarkable properties of 2D materials can generate more research efforts in this direction and eventually lead to the development of an EV-based green and sustainable transportation future for generations to come.

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来源期刊
Materials Science and Engineering: R: Reports
Materials Science and Engineering: R: Reports 工程技术-材料科学:综合
CiteScore
60.50
自引率
0.30%
发文量
19
审稿时长
34 days
期刊介绍: Materials Science & Engineering R: Reports is a journal that covers a wide range of topics in the field of materials science and engineering. It publishes both experimental and theoretical research papers, providing background information and critical assessments on various topics. The journal aims to publish high-quality and novel research papers and reviews. The subject areas covered by the journal include Materials Science (General), Electronic Materials, Optical Materials, and Magnetic Materials. In addition to regular issues, the journal also publishes special issues on key themes in the field of materials science, including Energy Materials, Materials for Health, Materials Discovery, Innovation for High Value Manufacturing, and Sustainable Materials development.
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