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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Entropy-Enthalpy Compensation in Peptide Adsorption on Solid Surfaces: Dependence on Surface Hydration
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Entropy-Enthalpy Compensation in Peptide Adsorption on Solid Surfaces: Dependence on Surface Hydration

机译:固体表面肽吸附中的熵 - 焓补偿:表面水合依赖性

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Although protein adsorption at the solid-water interface is of immense importance, understanding the crucial role of the water phase in mediating protein-surface interactions is lacking, particularly due to the lack of fundamental thermodynamic data. Herein, we have performed complicated free energy calculations and successfully extracted the entropy and enthalpy changes of molecular adsorption on solids. Using the gold and graphene as the surface models with distinct affinities to the water phase, we successfully unravel the sharply opposite manners of entropy-enthalpy compensation in driving water and tripeptide adsorptions on two surfaces. Though the thermodynamic features of water adsorption on surface are enthalpically dominated based on the positions of free energy barriers and minima, the favorable entropy term significantly decreases the free energy barrier and further stabilizes the adsorbate at the adsorption site on the graphene surface. For the peptide, the shape of the adsorption free energy profile is jointly determined by the enthalpy and entropy changes, which, however, alternatively act the driving force to promote the peptide adsorption on the Au surface and graphene surface. The distinct structural and dynamic properties of solid-liquid interfaces account for the special role of the interfacial water phase in regulating the competitive relationship between the entropy and enthalpy variations.
机译:虽然在固 - 液界面蛋白质吸附是极为重要,了解水相的介导蛋白表面相互作用的关键作用缺乏,特别是由于缺乏基本的热力学数据。在这里,我们已经完成复杂的自由能计算,并成功提取熵和分子吸附在固体焓变。使用金,石墨烯作为具有不同亲和力的水相中的表面模型,我们成功地解开的熵焓补偿急剧相反方式在在两个表面上的驱动水和三肽吸附。虽然水吸附的表面上的热力学特征基于自由能障碍和最小值的位置被焓为主,有利熵项显著降低的自由能屏障,再在该石墨烯表面上的吸附位点稳定了吸附物。对于肽,吸附自由能分布的形状由焓和熵的变化,其中,然而,可替代地作用驱动力,以促进在Au表面和石墨烯表面上的肽吸附共同确定。的固 - 液界面的不同的结构和动态特性占界面水相在调节熵和焓变化之间的竞争关系的特殊作用。

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