Sandwiched between the electrolyte and electrodes in a lithium-ion battery is a remarkably thin layer of material that strongly dictates battery performance and durability: the interphase. Although typically only a few to tens of nanometers thick, interphases are among the least understood components of an operating battery cell. Their complex and constantly evolving structures make it challenging to determine how their atomic features and microscopic variations translate into macroscopic battery performance. In a recent study, published in Advanced Energy Materials, researchers at
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LLNL signal and imaging engineer Aditya Mohan is driven by a simple but ambitious goal: to view the world through as many different wavelengths as possible. "I have a dream to bring together all the different ways of seeing an object, from X-rays to visible light to microwaves, to learn everything there is to know about its structure and properties," he said. "A leaf is green because it reflects green light. Millimeter waves can detect items inside a shipping box. X-rays can see through soft tissue and show your bones. Different wavelengths show different things about the same object." As
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