Construction and ultrasonic inspection of the high-capacity Li-ion battery based on the MnO2 decorated by Au nanoparticles anode

Cuihua An, Shikang Wang, Liyang Lin, Xiangyan Ding, Qibo Deng, Ning Hu
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Abstract

Lithium (Li)-ion batteries have become one of the main energy sources for electric vehicles and energy storage systems, which puts forward higher requirements for the detection of battery state of health (SOH). The SOH of batteries is crucial for areas such as battery management and renewable energy storage. Accurately evaluating the SOH of batteries can optimize charging and discharging strategies and extend battery life. Therefore, accurately and effectively monitoring the SOH of Li batteries is of great significance. An ultrasonic testing technology has been proposed that can non-destructively test the Li battery SOH, enabling accurate judgment of batteries in poor or damaged conditions. Firstly, the hetero-structured MnO2-Au has been constructed as the anode for Li-ion batteries. MnO2-Au heterojunction enhances electronic conductivity and ion conductivity. The MnO2-Au has exhibited high specific capacity and superior rate performances, which can well satisfy the ultrasonic inspection of the battery. Then, the ultrasonic testing has been conducted on batteries with different ages. The results suggest that batteries with short circuits have the highest nonlinear coefficient, while batteries with short circuits after long cycles have the lowest nonlinear coefficient. The nonlinear coefficient of batteries with different charging and discharging states is in the middle.
基于金纳米粒子装饰的二氧化锰正极的高容量锂离子电池的构造和超声波检测
锂离子电池已成为电动汽车和储能系统的主要能源之一,这对电池健康状况(SOH)的检测提出了更高的要求。电池的 SOH 对电池管理和可再生能源存储等领域至关重要。准确评估电池的 SOH 可以优化充电和放电策略,延长电池寿命。因此,准确有效地监测锂电池的 SOH 具有重要意义。本研究提出了一种超声波检测技术,可对锂电池的 SOH 进行无损检测,从而准确判断电池是否处于不良或损坏状态。首先,构建了异质结构的 MnO2-Au 作为锂离子电池的阳极。MnO2-Au 异质结增强了电子导电性和离子导电性。MnO2-Au 具有高比容量和优异的速率性能,能很好地满足电池的超声波检测要求。然后,对不同年限的电池进行了超声波检测。结果表明,短路电池的非线性系数最高,而长周期短路电池的非线性系数最低。不同充放电状态电池的非线性系数处于中间位置。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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