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Challenges in developing an accurate predictive model for electrochemical energy storage devices

机译:开发用于电化学储能装置的准确预测模型的挑战

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An accurate model, which can predict the electro-thermal performance and lifetime of electrochemical energy storage devices, is a vital, yet missing, element of current research focusing on electrochemical cell design and use. The main obstacle is a method to model the electrode-electrolyte interface. This paper provides a general overview of existing modeling methods and their limitations. A simple example illustrating a first principle based approach for modeling the interface between graphene with a copper backing and a single layer of water is demonstrated. A major limitation of first principles methods is the high computational cost. Challenges and future directions for research in modeling interfaces are also discussed.
机译:可以预测电化学能量存储设备的电热性能和寿命的准确模型,是当前专注于电化学电池设计和使用的研究的重要但尚缺的要素。主要障碍是对电极-电解质界面进行建模的方法。本文概述了现有建模方法及其局限性。演示了一个简单示例,该示例说明了基于第一原理的方法,该方法用于对带有铜背衬的石墨烯和单层水之间的界面进行建模。第一原理方法的主要限制是高计算成本。还讨论了建模接口研究中的挑战和未来方向。

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