首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >MOLECULAR STATICS CALCULATIONS FOR IRON OXIDE AND OXYHYDROXIDE MINERALS - TOWARD A FLEXIBLE MODEL OF THE REACTIVE MINERAL-WATER INTERFACE
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MOLECULAR STATICS CALCULATIONS FOR IRON OXIDE AND OXYHYDROXIDE MINERALS - TOWARD A FLEXIBLE MODEL OF THE REACTIVE MINERAL-WATER INTERFACE

机译:氧化铁和氢氧根矿物的分子静力学计算-建立反应性矿-水界面的柔性模型

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Molecular statics calculations are used to model the major FeOOH polymorphs and hematite. The potentials were taken from a previous investigation of Fe(III) in aqueous solutions which involved the extrapolation of the gas-phase Fe(III) -OH2 potential energy surface to the solvated hexaaqua complex. Using this model for the solid phases, lattice parameters for goethite, akaganeite, lepidocrocite, and hematite are generally within 4% of experiment. Internal energies (at 0 K) were computed for each structure; lepidocrocite is energetically the most stable polymorph, followed by akaganeite, with goethite being the least stable. While the model exhibits some variances with experiment, it performs remarkably well, despite the challenging constraint of being consistent with a dissociating molecular dynamics model for water in its gas, aqueous, and solid phases. Because of this consistency, the model allows qualitative theoretical treatment of previously unapproachable problems in mineral-water interface geochemistry. We apply the model to identify surface species on the solvated (110) surface of goethite. [References: 29]
机译:分子静力学计算用于模拟主要的FeOOH多晶型物和赤铁矿。电位取自先前对水溶液中Fe(III)的研究,该研究涉及将气相Fe(III)-OH2势能面外推至溶剂化的六水合物。使用该模型的固相,针铁矿,赤铜矿,纤铁矿和赤铁矿的晶格参数通常在实验的4%以内。计算每个结构的内部能量(在0 K时);能量上,锂铁云母是最稳定的多晶型物,其次是赤铁矿,而针铁矿的稳定性最低。尽管该模型与实验相比存在一些差异,但尽管具有与水在其气相,水相和固相中的解离分子动力学模型相一致的挑战性约束,但该模型仍具有出色的性能。由于这种一致性,该模型可以对矿泉水界面地球化学中以前无法解决的问题进行定性的理论处理。我们应用该模型来识别针铁矿的溶剂化(110)表面上的表面物种。 [参考:29]

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