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Thermal desorption spectroscopy (TDS)—Application in quantitative study of hydrogen evolution and trapping in crystalline and non-crystalline materials

机译:热脱附光谱法(TDS)—在定量研究结晶和非晶态材料中氢的逸出和捕集中的应用

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摘要

Thermal desorption spectroscopy is a very sensitive and accurate technique for studying hydrogen's diffusion and trapping processes in crystalline and non-crystalline materials. The technique involves accurate measurement of the desorption rate of gas atoms, soluted or trapped in the material, while heating the sample at a known rate. This paper reviews the thermal desorption spectroscopy (TDS) applications in quantitative studies of hydrogen trapping and release behavior in different crystalline and non-crystalline materials. It begins with a brief overview of the physical nature of hydrogen trapping and continues with a discussion on the origins of interactions between a hydrogen atom and a trap site. Based on the simple analytical model, of Lee and Lee, some examples of the assessment of comprehensive properties of hydrogen evolution and trapping in different crystalline and non-crystalline materials by means of TDS are shown and discussed in detail.
机译:热脱附光谱法是研究氢在晶体和非晶体材料中的扩散和捕集过程的一种非常灵敏且准确的技术。该技术涉及准确测量溶化或截留在材料中的气体原子的解吸速率,同时以已知速率加热样品。本文综述了热解吸光谱法(TDS)在不同晶体和非晶态材料中氢俘获和释放行为的定量研究中的应用。首先简要概述了氢捕获的物理性质,然后继续讨论了氢原子与捕获位点之间相互作用的起源。在Lee和Lee的简单分析模型的基础上,展示并详细讨论了通过TDS评估氢在不同晶体和非晶体材料中析氢和捕集的综合特性的一些示例。

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