AZoM talked to Zewen Zhang, who worked in collaboration with Professor Yi Cui to image the solid-electrolyte interphase in lithium batteries. This novel imaging technique could pave the way for ...
By coupling cryogenic X-ray photoelectron spectroscopy (cryo-XPs) with argon gas cluster ion beam (GCIB)sputtering, Prof. FU Qiang's team enables depth-resolved analysis of the vitrified solid ...
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Lithium batteries could last longer in extreme cold, space with low-temperature electrolytes
R esearchers have explored the performance of lithium-ion batteries (LIBs) in extreme cold. They reviewed low-temperature (LT ...
This study is led by Prof. Ji Qian and Prof. Renjie Chen (Department of Energy and Environmental Materials, School of Materials Science and Engineering, Beijing Institute of Technology). In this work, ...
In our daily lives, lithium-ion batteries have become indispensable. They function only because of a passivation layer that forms during their initial cycle. As researchers found out via simulations, ...
The silver-based coating adapts to changes in battery structure, reducing the risk of cracking or delamination. Silver ...
Utilizing lithium metal as the anode in batteries stands out as an intelligent choice due to its superior energy density compared to other materials. Each wedge consists of different constructions of ...
A team of researchers has discovered a new mechanism to stabilize the lithium metal electrode and electrolyte in lithium metal batteries. This new mechanism, which does not depend on the traditional ...
Thinking of buying an EV soon, see how solid-state progress in 2025 affects charging speed, range, safety, pricing, and ...
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