Dynamics of particle network in composite battery cathodes

Improving composite battery electrodes requires a delicate control of active materials and electrode formulation. The electrochemically active particles fulfill their role as energy exchange reservoirs through interacting with the surrounding conductive network. We formulate a network evolution mode...

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Veröffentlicht in:Science (American Association for the Advancement of Science) 2022-04, Vol.376 (6592), p.517-521
Hauptverfasser: Li, Jizhou, Sharma, Nikhil, Jiang, Zhisen, Yang, Yang, Monaco, Federico, Xu, Zhengrui, Hou, Dong, Ratner, Daniel, Pianetta, Piero, Cloetens, Peter, Lin, Feng, Zhao, Kejie, Liu, Yijin
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Sprache:eng
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Zusammenfassung:Improving composite battery electrodes requires a delicate control of active materials and electrode formulation. The electrochemically active particles fulfill their role as energy exchange reservoirs through interacting with the surrounding conductive network. We formulate a network evolution model to interpret the regulation and equilibration between electrochemical activity and mechanical damage of these particles. Through statistical analysis of thousands of particles using x-ray phase contrast holotomography in a LiNi Mn Co O -based cathode, we found that the local network heterogeneity results in asynchronous activities in the early cycles, and subsequently the particle assemblies move toward a synchronous behavior. Our study pinpoints the chemomechanical behavior of individual particles and enables better designs of the conductive network to optimize the utility of all the particles during operation.
ISSN:0036-8075
1095-9203
DOI:10.1126/science.abm8962