Liquid-like molecular dynamics explain solid-state battery material's superionic transport abilities
Researchers at Duke University have uncovered the molecular inner workings of a material that could underpin next-generation rechargeable batteries. Unlike today's popular lithium-ion batteries that ...
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Scientists develop high-speed ion transport membranes for clean energy applications
A new study published in Nanotechnology journal Nature Publishing Group’s Nature Nanotechnology has found ...
Modern life relies on electricity and electrical devices, from cars and buses to phones and laptops, to the electrical systems in homes. Behind many of these devices is a type of energy storage device ...
Scientists from the University of Oxford and partner institutions have created a new class of organic materials called state-independent electrolytes (SIEs). This discovery challenges a fundamental ...
The reactant ions were prepared using appropriate laser photoionization schemes so that they were in a single selected quantum state. This is in contrast to most previous experiments, in which ...
Despite the rapid progress demonstrated in the efficiency of Perovskite light-emitting diodes (PeLEDs) in the past few years, ion migration has challenged the practical applications of these devices ...
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