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On the interaction of molecular hydrogen with diamonds: An experimental study using nuclear probes and thermal desorption

机译:关于分子氢与钻石的相互作用:使用核探针和热脱附的实验研究

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Hydrogen behavior in monocrystalline diamonds with different concentrations and types of nitrogen defects was studied using Nuclear Reaction and micro-Elastic Recoil Detection Analyses and Thermal Desorption Spectroscopy. Diamonds were studied in as-received state, after HPHT treatment and after hydrogenation in molecular hydrogen. A considerable amount of hydrogen was found to be bonded to diamond surfaces. Kinetics of surface hydrogen desorption is similar to what was reported for plasma-hydrogenated diamonds. The solubility of hydrogen in type IIa diamonds is very low. The efficiency of hydrogen traps in diamond bulk varies with the dominant type of nitrogen-related defects. The cross-section of traps decreases in row Ib > IaA > IaB diamonds, though binding energy in type IaB crystals may be higher, than in type IaA. Dislocations may promote hydrogen diffusion. A marked dependency of the hydrogen content and diffusivity between diamond growth sectors were observed for some samples. The total hydrogen content is higher in octahedral sectors.
机译:使用核反应和微弹性反冲检测分析和热脱附光谱技术研究了具有不同浓度和类型的氮缺陷的单晶金刚石中的氢行为。在进行HPHT处理之后以及在分子氢中进行氢化之后,对钻石的接受状态进行了研究。发现大量的氢键合到金刚石表面。表面氢解吸的动力学类似于等离子氢化金刚石的报道。氢在IIa型钻石中的溶解度非常低。金刚石中氢陷阱的效率随氮相关缺陷的主要类型而变化。在Ib> IaA> IaB钻石行中,陷阱的横截面减小,尽管IaB型晶体的结合能可能高于IaA型。位错可促进氢扩散。对于某些样品,观察到氢含量和金刚石生长区之间扩散率的显着相关性。八面体部分的总氢含量较高。

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