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Development and Analysis of Solid-State Batteries with the COMSOL® Platform

机译:使用COMSOL®平台开发和分析固态电池

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Over the years, the increase of energy density in lithium-ion batteries has begun to plateau. The impact of mainstream consumer electronics alone has doubled lithium-ion battery production, making it clear that the need for more viable energy storage solutions is immediate. Extensive research in material science, coupled with advances in computer databases, has allowed researchers access to powerful software tools that may be used for simulating structural behavior before performing any lab experiments. These program components allow for the specification of behaviors and interactions for materials tested. This is integral in the pursuit of developing solid-state batteries that function efficiently, safely, and sustain-ably, since the specifications of such parameters will enable fabrication of energy storage solutions that are less detrimental to the environment but have higher energy densities than lithium-ion batteries.
机译:多年来,锂离子电池能量密度的增长已开始趋于平稳。仅主流消费电子产品的影响就使锂离子电池的产量增加了一倍,这清楚表明,迫切需要更可行的储能解决方案。材料科学方面的广泛研究与计算机数据库的发展相结合,使研究人员可以使用强大的软件工具,可以在执行任何实验室实验之前用来模拟结构行为。这些程序组件允许规范所测试材料的行为和相互作用。这是开发具有高效,安全和可持续功能的固态电池所不可或缺的,因为此类参数的规格将使制造出的储能解决方案比锂对环境的危害更小但具有更高的能量密度离子电池。

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    《NASA Tech Briefs》 |2019年第12期|24-28|共5页
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