材料科学
表征(材料科学)
电池(电)
纳米技术
聚焦离子束
锂离子电池
离子
量子力学
物理
功率(物理)
作者
Ralf Ziesche,Thomas M. M. Heenan,Pooja Kumari,Jarrod Williams,Weiqun Li,Matthew E. Curd,Timothy L. Burnett,Ian Robinson,Dan J. L. Brett,Matthias J. Ehrhardt,Paul D. Quinn,B. Layla Mehdi,Philip J. Withers,Melanie M. Britton,Nigel D. Browning,Paul R. Shearing
标识
DOI:10.1002/aenm.202300103
摘要
Abstract Demand for low carbon energy storage has highlighted the importance of imaging techniques for the characterization of electrode microstructures to determine key parameters associated with battery manufacture, operation, degradation, and failure both for next generation lithium and other novel battery systems. Here, recent progress and literature highlights from magnetic resonance, neutron, X‐ray, focused ion beam, scanning and transmission electron microscopy are summarized. Two major trends are identified: First, the use of multi‐modal microscopy in a correlative fashion, providing contrast modes spanning length‐ and time‐scales, and second, the application of machine learning to guide data collection and analysis, recognizing the role of these tools in evaluating large data streams from increasingly sophisticated imaging experiments.
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