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Synergy of Electrostatic and van der Waals Interactions in the Adhesion of Epoxy Resin with Carbon-Fiber and Glass Surfaces

机译:静电和范德瓦尔斯的协同作用与碳纤维和玻璃表面的环氧树脂粘附相互作用

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摘要

The adhesion between epoxy resin and carbon fiber is investigated by using pair interaction energy decomposition analysis (PIEDA), by which the adhesive interaction energy and adhesive force can be partitioned into the electrostatic, exchangerepulsion, charge-transfer, and van der Waals (dispersion) contributions. The three stabilizing electrostatic, charge-transfer, and dispersion effects are correlated with the destabilizing exchange-repulsion effect. The surface structures of carbon fiber are modeled by the basal face, the armchair-edge structure, and the OH-functionalized armchair-edge structure of graphite. The surface of alpha-cristobalite (covered with OH groups), which can be viewed as a good model of a hydrophilic glass surface, is also studied. Adhesive properties of the model interfaces are evaluated on the basis of the binding energy of the resin with the carbon and glass surfaces and the adhesive force acting at the interfaces in terms of energy decomposition. PIEDA calculations demonstrate that only dispersion interactions can substantially work in the hydrophobic surfaces of the basal face and armchair-edge structures. This is a direct consequence of the electrostatic and charge-transfer interactions being cancelled by the exchange-repulsion interactions. On the other hand, both electrostatic and dispersion interactions are significant in the OH-functionalized surfaces of the armchair edge of graphite and a-cristobalite.
机译:通过使用对相互作用能量分解分析(PIEDA)来研究环氧树脂和碳纤维之间的粘附性,通过该粘合剂相互作用能量和粘合力可以被分配到静电,交换,电荷,电荷转移和范德华(分散体)中贡献。三个稳定的静电,电荷转移和分散效应与稳定的交换排斥效应相关。碳纤维的表面结构由基部,扶手椅边缘结构和石墨的OH-官能化扶手椅结构建模。还研究了可以被视为亲水性玻璃表面的良好模型的α-ristobalite(用OH基团覆盖)的表面。基于与碳和玻璃表面的树脂的结合能量以及在能量分解方面作用在界面的粘合力的基础上,评估模型界面的粘合性能。 Pieda计算表明,只有色散相互作用可以在基础面和扶手椅的疏水表面中基本上工作。这是通过交换排斥相互作用取消的静电和电荷转移相互作用的直接结果。另一方面,静电和分散相互作用在石墨和A-Cristobalite的扶手椅边缘的OH-官能化表面中是显着的。

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