4.8 Article

Understanding aggregation hindered Li-ion transport in transition metal oxide at mesoscale

期刊

ENERGY STORAGE MATERIALS
卷 19, 期 -, 页码 439-445

出版社

ELSEVIER
DOI: 10.1016/j.ensm.2019.03.017

关键词

2D holey nanosheet; Li-ion transport; Aggregation; Mesoscale; Energy storage

资金

  1. Center for Mesoscale Transport Properties, an Energy Frontier Research Center from the U.S. Department of Energy, Office of Science, Basic Energy Sciences [DE-SC0012673]
  2. Center for Functional Nanomaterials, a U.S. DOE Office of Science Facility, at Brookhaven National Laboratory [DE-SC0012704]

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Conversion based transition-metal oxides as a promising class of anode materials, require proper nanostructuring for enhanced Li-ion storage capabilities. However, aggregation is found to be a common issue in nanomaterial systems, and can have detrimental effects on transport properties in composite electrodes. By employing a model transition-metal oxide anode with unique two-dimensional holey nanostructures, we investigated underlying reasons for the limited electrochemical kinetics induced by mesoscale aggregation. Through combined electrochemical and in situ characterization techniques, we demonstrate that aggregation leads to hindered interfacial charge transfer and retarded phase transformation, with the influence on kinetics escalating with more aggregation. These results shed light on more dedicated structural design for effective battery electrodes across multiple length scales.

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