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Inelastic neutron scattering: a novel approach towards determination of equilibrium isotopic fractionation factors. Size effects on heat capacity and beta-factor of diamond

机译:无弹性中子散射:一种探讨均衡同位素分级因子的新方法。 关于钻石的热容量和β系列的尺寸影响

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摘要

A new experimental method for the determination of equilibrium isotopic properties of substances based on inelastic neutron scattering (INS) is proposed. We present a mathematical formalism, which allows the calculation of the beta-factor of single-element solids based on INS-derived Phonon Density of States (PDOS). PDOS data for nanodiamonds of widely different sizes and of macroscopic diamond were determined from inelastic neutron scattering experiments. This allowed the determination of heat capacities and, for the first time,beta-factors of the diamond nanoparticles. We demonstrate a considerable size-dependent increase of the heat capacities and decrease of the beta-factors for nanodiamonds relative to bulk diamond. Contributions of surface impurities/phases and phonon confinement to the size effects are evaluated. Applications in the formation of diamond nanoparticles in nature are briefly discussed.
机译:提出了一种新的基于非弹性中子散射(INS)的物质测定的新试验方法。 我们提出了一种数学形式主义,其允许基于所态(PDOS)的INS衍生的声子密度来计算单元素固体的β因子。 基于内部中子散射实验确定了广泛不同尺寸和宏观金刚石的纳米金刚胺的PDOS数据。 这允许热容量的测定,并且是第一次,第一次β系列的金刚石纳米颗粒。 我们展示了相当大的依赖性增加的热容量和纳米金刚型相对于散装金刚石的β系数减少。 评估了表面杂质/阶段的贡献和对尺寸效应的限制。 简要讨论了在性质中形成金刚石纳米粒子的应用。

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