Knaup Jan M, Köhler Christof, Frauenheim Thomas, Blumenau Alexander T, Amkreutz Marc, Schiffels Peter, Schneider Bernhard, Hennemann Otto-Diedrich
Bremen Center for Computational Materials Science, University of Bremen, Otto-Hahn-Allee 1, 28359 Bremen, Germany.
J Phys Chem B. 2006 Oct 19;110(41):20460-8. doi: 10.1021/jp063814w.
We calculate the minimum energy paths and reaction energies of the adsorption of the epoxide adhesive components diglycidylesterbisphenol A (DGEBA), diethyltriamine (DETA), and the adhesion promoter 3-aminopropylmethoxysilane (AMEO) at two different sites on a model of the native Al2O3 surface, using the nudged elastic band algorithm in conjunction with self-consistent charge-density functional based tight binding. Our results show that the chosen combination of methods is well suited to obtain an overview of the reaction mechanisms and kinetics of the adsorption of organic molecules on inorganic surfaces. The obtained MEP-s show that there is preference for the adsorption of the adhesion promoter, AMEO, over the resin, DGEBA, while the adsorption of the curing agent, DETA, is unfavorable. Our approach also gives an insight into the ranges of the mechanical and electronic influences of the adsorption process on the interface, which neither full ab initio methods nor force field approaches can provide. These results will help to develop a quantum mechanics-molecular mechanics multiscale embedding scheme for more detailed studies of organic/inorganic hybrid interface reactions.
我们使用推挤弹性带算法结合基于自洽电荷密度泛函的紧束缚方法,计算了环氧化合物粘合剂组分双酚A二缩水甘油酯(DGEBA)、二乙三胺(DETA)以及粘合促进剂3-氨丙基甲氧基硅烷(AMEO)在天然Al2O3表面模型上两个不同位点的吸附的最小能量路径和反应能量。我们的结果表明,所选择的方法组合非常适合获得有机分子在无机表面吸附的反应机理和动力学的概述。所获得的最小能量路径表明,相比于树脂DGEBA,粘合促进剂AMEO更倾向于吸附,而固化剂DETA的吸附则不利。我们的方法还深入了解了吸附过程对界面的机械和电子影响范围,这是全从头算方法和力场方法都无法提供的。这些结果将有助于开发一种量子力学-分子力学多尺度嵌入方案,用于更详细地研究有机/无机杂化界面反应。