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Engineering cathode particle (in-)homogeneity through Secondary Electron Hyperspectral Imaging

Engineering cathode particle (in-)homogeneity through Secondary Electron Hyperspectral Imaging
通过二次电子高光谱成像工程阴极颗粒(不)均匀性
批准号:
2426048
负责人:
金额:
$0.0万
依托单位:
依托单位国家:
英国
项目类别:
Studentship
财政年份:
2020
资助国家:
英国
项目状态:
未结题
起止时间:
2020 至 --

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中文摘要
翻译
开发新的阴极化学需要对结构和颗粒均匀性有基本的了解,以便充分建立最佳性能材料的条件。对于无序存在的材料尤其如此,例如富锰无序岩盐,或者可能发生阳离子混合的系统,例如富镍层状相或高压尖晶石。该博士生将应用二次电子高光谱成像(SEHI)方法,这是一种新的空间分辨化学表征技术,可实现纳米分辨率,以评估来自FutureCatproject合成团队的新阴极颗粒。这些见解将有助于指导FutureCat项目中的材料合成方法,同时也代表了法拉第社区在展示一种潜在的广泛可用的技术方面的高回报结果,这将有利于多个fir研究项目。
英文摘要
Exploiting new cathode chemistries requires a fundamental understanding of structure andparticle homogeneity in order to fully establish conditions for best performing materials. This isparticularly true for materials where disorder exists, e.g. the manganese-rich disordered rocksalts, or systems where cation mixing can occur, e.g. nickel-rich layered phases or the highvoltage spinels. This PhD student will apply Secondary Electron Hyperspectral Imaging (SEHI)methods, a new spatially-resolved chemical characterisation technique which enables nanometerresolution, to evaluate new cathode particles emerging from the synthetic teams on the FutureCatproject. Such insights will help to steer materials synthesis approaches in the FutureCat project,while also representing a high-reward outcome for the Faraday community in terms ofshowcasing a potentially widely-accessible technique that would be of benefit for multiple FIresearch projects.
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