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A combinatorial characterization scheme for high-throughput investigations of hydrogen storage materials

机译:用于储氢材料高通量研究的组合表征方案

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摘要

In order to increase measurement throughput, a characterization scheme has been developed that accurately measures the hydrogen storage properties of materials in quantities ranging from 10 ng to 1 g. Initial identification of promising materials is realized by rapidly screening thin-film composition spread and thickness wedge samples using normalized IR emissivity imaging. The hydrogen storage properties of promising samples are confirmed through measurements on single-composition films with high-sensitivity (resolution <0.3 μg) Sievert’s-type apparatus. For selected samples, larger quantities of up to ∼100 mg may be prepared and their (de)hydrogenation and micro-structural properties probed via parallel in situ Raman spectroscopy. Final confirmation of the hydrogen storage properties is obtained on ∼1 g powder samples using a combined Raman spectroscopy/Sievert’s apparatus.
机译:为了提高测量通量,已开发出一种表征方案,可以精确测量10 ng至1 g范围内材料的储氢性能。通过使用归一化红外发射率成像快速筛查薄膜成分的扩散和厚度楔形样品,可以初步鉴定有前途的材料。通过在具有高灵敏度(分辨率<0.3μg)Sievert型仪器的单组分薄膜上进行测量,证实了有希望的样品的储氢性能。对于选定的样品,可以制备至多约100 mg的样品,并通过平行原位拉曼光谱法探测其(脱氢)和微观结构性质。使用组合式拉曼光谱仪/ Sievert的设备,在约1 g粉末样品上可以最终确定储氢性能。

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