Results 201 to 210 of about 1,383,542 (265)
The interplay between stack pressure, mechanical expansion and degradation pathways in lithium-ion batteries. [PDF]
Wang H +12 more
europepmc +1 more source
Stacking Pressure‐Driven Interfacial Dynamics in Anode‐Free Solid‐State Lithium Batteries
Using a three‐electrode setup, it is found that stacking pressure improves both anode and cathode interfaces but more effectively stabilizes the anode. Under low pressure, a sudden anode resistance rise indicates contact loss. Higher pressure delays this via Li creep and plastic deformation, maintaining interfacial contact.
Jianneng Liang +8 more
wiley +1 more source
In Situ Stress and Strain Detection in Lithium-ion Batteries: A Review of Optical, Acoustical, and Electrical Techniques. [PDF]
Luo X, Zhang Y, Yu Y, Liu W.
europepmc +1 more source
Combining recently established two ground‐breaking concepts, the adoption of WCAs and the use of alkoxyalkylamine‐based solvents in electrolyte formulations for rechargeable magnesium metal batteries, has led to unexpectedly unsuccessful electrochemical Mg plating/stripping performance. Comprehensive experimental and computational analyses revealed the
Toshihiko Mandai +4 more
wiley +1 more source
Deep learning-based RUL and SOH prediction of lithium-ion batteries using LOCO. [PDF]
Ali B +6 more
europepmc +1 more source
Differential Tissue‐Coupled Powering for Battery‐Free Injectable Electroceuticals
A thread‐like injectable neural stimulator is powered through differential tissue‐coupled powering (DTCP), which harvests RF‐frequency tissue potentials with an elongated receiver while preserving a injectable cross‐section. The system integrates an ASIC, stimulation electrodes, and a portable transmitter, enabling wireless peripheral nerve stimulation,
Han Wu +13 more
wiley +1 more source
Origin of crack propagation in lithium cobalt oxide positive electrode for lithium-ion batteries. [PDF]
Zhao W +20 more
europepmc +1 more source
Design Principles for Alloy‐Anode‐Based Low‐Stack‐Pressure Solid‐State Batteries
Design principles for matching alloy anodes with solid electrolytes to achieve low‐pressure solid‐state batteries are identified through electro‐chemo‐mechanical modeling, which reveals the critical stack pressure for interfacial stability, and validated experimentally.
Yuping Huang +7 more
wiley +1 more source

