Nowadays, lithium-ion batteries are one of the most widespread energy storage systems, being extensively employed in a large variety of applications. A significant effort has been made to develop advanced materials and manufacturing processes with the aim of increasing batteries performance and preserving nominal properties with cycling. Nevertheless, mechanical degradation is still a significant damaging mechanism and the main cause of capacity fade and power loss. Lithium ions are inserted and extracted into the lattice structure of active materials during battery operation, causing the deformation of the crystalline lattice itself. Strain mismatches within the different areas of the active material caused by the inhomogeneous lithium-ion...
The structure degradation of commercial Lithium-ion battery (LIB) graphite anodes with different cyc...
Over the last few decades, rechargeable lithium-ion batteries have been extensively used in portable...
Li-ion batteries is a system that dynamically couples electrochemistry and mechanics. The electroche...
In order to achieve a high level of reliability in rechargeable Li-ion batteries, battery cell mater...
Abstract Several strong points make lithium ion battery one of the most widespread e...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
One of the major catastrophic events in the accidents involving electric vehicles is the electric sh...
Silicon is considered as a promising electrode material for next-generation, high-performance lithiu...
Mechanical degradation of lithium-ion battery (LIB) electrodes has been correlated with capacity fad...
ABSTRACT: We have measured the fracture energy of lithiated silicon thin-film electrodes as a functi...
Long-term durability is a major obstacle limiting the widespread use of lithium-ion batteries in hea...
Fracture of lithium-ion battery electrodes is found to contribute to capacity fade and reduce the li...
Fracture of electrode particles due to diffusion-induced stress has been implicated as a possible me...
We have performed a number of experiments to examine the mechanical behavior of amorphous silicon -e...
This is the first quantitative analysis of mechanical reliability of all-solid state batteries. Mech...
The structure degradation of commercial Lithium-ion battery (LIB) graphite anodes with different cyc...
Over the last few decades, rechargeable lithium-ion batteries have been extensively used in portable...
Li-ion batteries is a system that dynamically couples electrochemistry and mechanics. The electroche...
In order to achieve a high level of reliability in rechargeable Li-ion batteries, battery cell mater...
Abstract Several strong points make lithium ion battery one of the most widespread e...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
One of the major catastrophic events in the accidents involving electric vehicles is the electric sh...
Silicon is considered as a promising electrode material for next-generation, high-performance lithiu...
Mechanical degradation of lithium-ion battery (LIB) electrodes has been correlated with capacity fad...
ABSTRACT: We have measured the fracture energy of lithiated silicon thin-film electrodes as a functi...
Long-term durability is a major obstacle limiting the widespread use of lithium-ion batteries in hea...
Fracture of lithium-ion battery electrodes is found to contribute to capacity fade and reduce the li...
Fracture of electrode particles due to diffusion-induced stress has been implicated as a possible me...
We have performed a number of experiments to examine the mechanical behavior of amorphous silicon -e...
This is the first quantitative analysis of mechanical reliability of all-solid state batteries. Mech...
The structure degradation of commercial Lithium-ion battery (LIB) graphite anodes with different cyc...
Over the last few decades, rechargeable lithium-ion batteries have been extensively used in portable...
Li-ion batteries is a system that dynamically couples electrochemistry and mechanics. The electroche...