论文标题

模拟软离子材料和离子设备的耦合电化学和机械行为

Modeling coupled electrochemical and mechanical behavior of soft ionic materials and ionotronic devices

论文作者

Bosnjak, Nikola, Tepermeister, Max, Silberstein, Meredith

论文摘要

最近,对能够承受大拉伸的柔软和生物相容性电子设备的需求增加了。离子导电聚合物为这些新兴应用提供了一类有希望的软材料,因为它们能够在聚合物网络上实现电荷传输,同时保留所需的机械和化学特征。与传统电导体中的电子转移相反,通过离子迁移实现了跨这些聚合物的电荷传输。当将这些材料与电气系统结合使用时,它们被称为离子设备。根据设备的材料组成和几何形状模拟设备性能的能力将加速并改善离子设备设计。为离子导电聚合物开发可靠的模拟能力的主要挑战是复杂的电化学机械行为。在这项工作中,我们通过引入一个多物理框架来应对这一挑战,该框架结合了离子传输,电场和大变形的耦合效应。通过模拟代表性离子传输问题和软离子异常设备的操作来展示开发的多物理模型的效用。

Recently there has been an increase in demand for soft and biocompatible electronic devices capable of withstanding large stretch. Ionically conductive polymers present a promising class of soft materials for these emerging applications due to their ability to realize charge transport across the polymer network, while preserving the desired mechanical and chemical features. As opposed to electron transfer in traditional electrical conductors, the charge transport across these polymers is achieved through ion migration. When such materials are used in combination with electrical systems, they are known as ionotronic devices. The ability to simulate device performance based on its material composition and geometry would accelerate and improve ionotronic device design. The main challenge in developing reliable simulation capabilities for ionically conductive polymers is the complex and coupled electro-chemo-mechanical behavior. In this work we address this challenge by introducing a multiphysics framework incorporating the coupled effects of ion transport, electric fields and large deformation. The utility of the developed multiphysics model is showcased by simulating representative ion transport problems and the operation of soft ionotronic devices.

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