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Integrating multi-length scale high resolution 3D imaging and modelling in the characterisation and identification of mechanical failure sites in electrochemical dendrites

机译:将多长度尺度高分辨率3D成像和建模集成在电化学树枝状晶体中机械失效位点的表征和识别中

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摘要

The Zn-air battery system is attractive because of its potentially high power density, environmental compatibility and low-cost materials [1]. This paper is focused on understanding the degradation of Zn air batteries, in particular the evolution of Zn dendrites, one of the main degradation mechanisms. Complementary tomographic techniques allow the direct 3D imaging and characterisation of complex microstructures, including the observation and quantification of dendrite growth. Here we present results from 3D x-ray and FIB-SEM tomography of Zn dendrite formation in a zinc-air battery, down to resolutions of tens of nanometers, enabling analysis of complex micro-structures. This approach is shown to be effective in understanding how electrochemical dendrites grow, and demonstrates that tomography coupled with modelling can provide new insights into dendrite growth in electrochemical systems.
机译:锌空气电池系统之所以具有吸引力,是因为其潜在的高功率密度,环境兼容性和低成本的材料[1]。本文着重于了解锌空气电池的降解,特别是锌枝晶的演化,这是主要的降解机理之一。互补的层析成像技术可以对复杂的微结构进行直接3D成像和表征,包括观察和量化枝晶生长。在这里,我们介绍3D X射线和FIB-SEM断层摄影术对锌-空气电池中的锌枝晶形成的结果,其分辨率低至数十纳米,从而能够分析复杂的微观结构。已证明该方法可有效地理解电化学树枝状晶体的生长方式,并证明层析成像与建模相结合可以为电化学系统中树枝状晶体的生长提供新的见解。

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