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水泥基聚合物复合材料自修复功能的原子起源

Atomic Origins of the Self-Healing Function in Cement-Polymer Composites.

机构信息

Basic and Applied Molecular Foundations, Physical and Computational Sciences Directorate, ‡Energy and Environment Directorate, and §Geochemistry, Physical and Computational Sciences Directorate, Pacific Northwest National Laboratory , P.O. Box 999, Richland, Washington 99352, United States.

出版信息

ACS Appl Mater Interfaces. 2018 Jan 24;10(3):3011-3019. doi: 10.1021/acsami.7b13309. Epub 2018 Jan 12.

Abstract

Motivated by recent advances in self-healing cement and epoxy polymer composites, we present a combined ab initio molecular dynamics and sum frequency generation (SFG) vibrational spectroscopy study of a calcium-silicate-hydrate/polymer interface. On stable, low-defect surfaces, the polymer only weakly adheres through coordination and hydrogen bonding interactions and can be easily mobilized toward defected surfaces. Conversely, on fractured surfaces, the polymer strongly anchors through ionic Ca-O bonds resulting from the deprotonation of polymer hydroxyl groups. In addition, polymer S-S groups are turned away from the cement-polymer interface, allowing for the self-healing function within the polymer. The overall elasticity and healing properties of these composites stem from a flexible hydrogen bonding network that can readily adapt to surface morphology. The theoretical vibrational signals associated with the proposed cement-polymer interfacial chemistry were confirmed experimentally by SFG vibrational spectroscopy.

摘要

受近期自修复水泥和环氧树脂基复合材料的发展启发,我们结合从头算分子动力学和和频产生(SFG)振动光谱研究了硅酸钙水合物/聚合物界面。在稳定的低缺陷表面上,聚合物仅通过配位和氢键相互作用弱附着,并且可以很容易地朝向缺陷表面移动。相反,在断裂表面上,聚合物通过源自聚合物羟基脱质子的离子 Ca-O 键牢固地固定,从而牢固地固定。此外,聚合物 S-S 基团远离水泥-聚合物界面,允许聚合物内的自修复功能。这些复合材料的整体弹性和修复性能源自可以轻松适应表面形貌的灵活氢键网络。通过和频产生(SFG)振动光谱实验证实了与所提出的水泥-聚合物界面化学相关的理论振动信号。

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