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首页> 外文期刊>Journal of Crystal Growth >Computer simulations of the adsorption of citric acid at hydroxyapatite surfaces
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Computer simulations of the adsorption of citric acid at hydroxyapatite surfaces

机译:柠檬酸在羟基磷灰石表面吸附的计算机模拟

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摘要

Computer modelling techniques are employed to investigate the adsorption of the citric acid molecule to a range of hydroxyapatite surfaces, and new interatomic potential parameters for the apatite/adsorbate interactions are presented. Citric acid coordinates mainly to the surfaces through interaction between its oxygen atoms to surface calcium ions, followed by hydrogen-bonded interactions to surface oxygen ions. Bridging between two or more surface calcium ions is the preferred mode of adsorption, when the geometry of the surface allows it, and multiple interactions between the surfaces and the functional groups of the citric acid molecule lead to the largest adsorption energies. The calculated adsorption energies range from 80 kJ mol(-1) on the {0001} surface to 280-330 kJ mol(-1) on the {10
机译:使用计算机建模技术来研究柠檬酸分子在一系列羟基磷灰石表面的吸附,并提出了磷灰石/吸附质相互作用的新的原子间电势参数。柠檬酸主要通过其氧原子与表面钙离子之间的相互作用,然后通过氢键与表面氧离子的相互作用,与表面协调。当表面的几何形状允许时,在两个或多个表面钙离子之间架桥是优选的吸附方式,并且表面与柠檬酸分子的官能团之间的多次相互作用导致最大的吸附能。计算得出的吸附能范围为{0001}表面的80 kJ mol(-1)到{10}表面的280-330 kJ mol(-1)

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