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Artificial generation of representative single Li-ion electrode particle architectures from microscopy data
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作者 Orkun Furat Lukas Petrich +4 位作者 Donal P.Finegan david diercks Francois Usseglio-Viretta Kandler Smith Volker Schmidt 《npj Computational Materials》 SCIE EI CSCD 2021年第1期948-963,共16页
Accurately capturing the architecture of single lithium-ion electrode particles is necessary for understanding their performance limitations and degradation mechanisms through multi-physics modeling.Information is dra... Accurately capturing the architecture of single lithium-ion electrode particles is necessary for understanding their performance limitations and degradation mechanisms through multi-physics modeling.Information is drawn from multimodal microscopy techniques to artificially generate LiNi_(0.5)Mn_(0.3)Co_(0.2)O_(2) particles with full sub-particle grain detail.Statistical representations of particle architectures are derived from X-ray nano-computed tomography data supporting an‘outer shell’model,and sub-particle grain representations are derived from focused-ion beam electron backscatter diffraction data supporting a‘grain’model.A random field model used to characterize and generate the outer shells,and a random tessellation model used to characterize and generate grain architectures,are combined to form a multi-scale model for the generation of virtual electrode particles with fullgrain detail.This work demonstrates the possibility of generating representative single electrode particle architectures for modeling and characterization that can guide synthesis approaches of particle architectures with enhanced performance. 展开更多
关键词 ELECTRODE PARTICLE outer
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