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Electrochemical processes and reactions in rechargeable battery materials revealed via in situ transmission electron microscopy
Z Sun, J Pan, W Chen, H Chen, S Zhou… - Advanced Energy …, 2024 - Wiley Online Library
Rechargeable batteries that make renewable energy resources feasible for electrification
technologies have been extensively investigated. Their corresponding performance is …
technologies have been extensively investigated. Their corresponding performance is …
Chemomechanics of rechargeable batteries: status, theories, and perspectives
Chemomechanics is an old subject, yet its importance has been revived in rechargeable
batteries where the mechanical energy and damage associated with redox reactions can …
batteries where the mechanical energy and damage associated with redox reactions can …
Review of recent development of in situ/operando characterization techniques for lithium battery research
The increasing demands of energy storage require the significant improvement of current Li‐
ion battery electrode materials and the development of advanced electrode materials. Thus …
ion battery electrode materials and the development of advanced electrode materials. Thus …
Origin of lithium whisker formation and growth under stress
Y He, X Ren, Y Xu, MH Engelhard, X Li, J **-W/publication/286279129_Germanium-Based_Nanomaterials_for_Rechargeable_Batteries/links/619df063f1d624457166ea79/Germanium-Based-Nanomaterials-for-Rechargeable-Batteries.pdf" data-clk="hl=lt&sa=T&oi=gga&ct=gga&cd=8&d=15746858228747431148&ei=SkW8Z7-AENelieoPwouE4QE" data-clk-atid="7Gzt7CAUiNoJ" target="_blank">[PDF] researchgate.net
Germanium‐based nanomaterials for rechargeable batteries
Germanium‐based nanomaterials have emerged as important candidates for next‐
generation energy‐storage devices owing to their unique chemical and physical properties …
generation energy‐storage devices owing to their unique chemical and physical properties …
A chemo-mechanical model of lithiation in silicon
We present a chemo-mechanical model to investigate the lithiation-induced phase
transformation, morphological evolution, stress generation and fracture in crystalline silicon …
transformation, morphological evolution, stress generation and fracture in crystalline silicon …