An intrinsic knowledge gap between current understandings obtained experimentally and the underlying working or degradation mechanisms of rechargeable lithium batteries still remains, giving direct rise to application challenges, e.g., safety issues, predicaments in identifying performance-aging factors and dilemmas in guiding further research directions. Against this background, non-destructive and three-dimensional (synchrotron) X-ray tomography that guarantees a direct visual access to inner electrodes has been employed herein to: in-situ record the evolution of internal short circuits; characterize the behaviors of widely employed separators; investigate the morphological evolution of Li electrodes under different cycling conditions; an...
Imaging morphological changes that occur during the lifetime of rechargeable batteries is necessary ...
Imaging morphological changes that occur during the lifetime of rechargeable batteries is necessary ...
Rechargeable lithium ion batteries LIBs have penetrated ubiquitously into our daily lives from cel...
An intrinsic knowledge gap between current understandings obtained experimentally and the underlying...
An intrinsic knowledge gap between current understandings obtained experimentally and the underlying...
An intrinsic knowledge gap between current understandings obtained experimentally and the underlying...
An intrinsic knowledge gap between current understandings obtained experimentally and the underlying...
An intrinsic knowledge gap between current understandings obtained experimentally and the underlying...
An intrinsic knowledge gap between current understandings obtained experimentally and the underlying...
The growth of electrodeposited lithium microstructures on metallic lithium electrodes has prevented ...
The growth of electrodeposited lithium microstructures on metallic lithium electrodes has prevented ...
High–energy-density materials that undergo conversion and/or alloying reactions hold promise for nex...
Efficient Li utilization is generally considered to be a prerequisite for developing next-generation...
Efficient Li utilization is generally considered to be a prerequisite for developing next generatio...
Efficient Li utilization is generally considered to be a prerequisite for developing next generatio...
Imaging morphological changes that occur during the lifetime of rechargeable batteries is necessary ...
Imaging morphological changes that occur during the lifetime of rechargeable batteries is necessary ...
Rechargeable lithium ion batteries LIBs have penetrated ubiquitously into our daily lives from cel...
An intrinsic knowledge gap between current understandings obtained experimentally and the underlying...
An intrinsic knowledge gap between current understandings obtained experimentally and the underlying...
An intrinsic knowledge gap between current understandings obtained experimentally and the underlying...
An intrinsic knowledge gap between current understandings obtained experimentally and the underlying...
An intrinsic knowledge gap between current understandings obtained experimentally and the underlying...
An intrinsic knowledge gap between current understandings obtained experimentally and the underlying...
The growth of electrodeposited lithium microstructures on metallic lithium electrodes has prevented ...
The growth of electrodeposited lithium microstructures on metallic lithium electrodes has prevented ...
High–energy-density materials that undergo conversion and/or alloying reactions hold promise for nex...
Efficient Li utilization is generally considered to be a prerequisite for developing next-generation...
Efficient Li utilization is generally considered to be a prerequisite for developing next generatio...
Efficient Li utilization is generally considered to be a prerequisite for developing next generatio...
Imaging morphological changes that occur during the lifetime of rechargeable batteries is necessary ...
Imaging morphological changes that occur during the lifetime of rechargeable batteries is necessary ...
Rechargeable lithium ion batteries LIBs have penetrated ubiquitously into our daily lives from cel...