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Hydrogen distribution in chondrodite: a first–principles calculation

机译:软骨中氢的分布:第一性原理计算

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In synthetic hydroxyl–chondrodite and hydroxyl–clinohumite, two hydrogen sites (H1 and H2) are known. However, hydrogen occupying only H1 site has been reported for natural F– and Ti–rich chondrodite and clinohumite. In order to understand hydrogen distribution in these sites, stability of hydrogens at these sites in chondrodite is studied by first–principles density functional theory calculation. For hydroxyl–chondrodite, lowest energy was found when both H1 and H2 sites are half occupied by hydrogens. In this configuration, strong H1–H1 repulsion is avoided, and nearly straight hydrogen bond of O–H1???O–H2 is realized. When a half of OH~(?) is replaced with F~(?) or replaced with O~(2?) in the case of Ti–containing systems, hydrogen occupying H1 site is always favored over hydrogen in H2 site so as to form nearly straight hydrogen bond of O–H1???F~(?) (or O~(2?)). Our calculations are fully consistent with the observed structures in both synthetic and natural chondrodite, and revealed that hydrogen distribution in humite group minerals is mostly governed by hydrogen bonding at H1 site.
机译:在合成的羟基长石和羟基斜发石中,两个氢位点(H1和H2)是已知的。但是,据报道,天然F-和Ti-富硒球晶石和斜发石仅占据H1位置的氢。为了了解氢在这些位置的分布,通过第一性原理密度泛函理论计算研究了长绒岩中这些位置的氢的稳定性。对于羟基长石,当H1和H2位置同时被氢占据一半时,能量最低。在这种结构中,避免了强的H1-H1排斥力,并且实现了O-H1→O-H2几乎直的氢键。在含钛体系中,当一半的OH〜(?)被F〜(?)取代或被O〜(2?)取代时,占据氢的H1位置总是比处于H2位置的氢更有利。形成O–H1 ??? F〜(?)(或O〜(2?))的几乎直氢键。我们的计算与在合成和天然球粒陨石中观察到的结构完全一致,并揭示了在腐殖质族矿物中的氢分布主要受H1部位的氢键控制。

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