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Evaluation of Molecular Interaction between Organic Molecules Physisorbed on Silicon Native Oxide Surface in Dry and Humid Atmosphere

机译:干燥和潮湿大气中自然吸附在天然氧化硅表面上的有机分子之间的分子相互作用的评价

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摘要

An experimental method for evaluating the intensity of molecular interactions between organic molecules and surfaces was studied. The organic compounds' physisorption and desorption rates to and from the silicon native oxide surface were in situ measured using a quartz crystal microbalance and analyzed following the multicomponent organic species adsorption-induced contamination model. Three organic compounds, isopropanol, octanol and diethylphthalate, in each single-component system and in a multicomponent system were used in dry and humid atmosphere. The physisorption and desorption rate constants of these compounds in the dry atmosphere were higher than those in the humid atmosphere. However, the molecular radii in both atmospheres were similar. Thus, the interaction between the organic molecules and the surface was influenced by the existence of a thin water layer, while the interaction between the organic molecules had less influence by the atmosphere. (C) The Author(s) 2015. Published by ECS. All rights reserved.
机译:研究了评估有机分子与表面之间分子相互作用强度的实验方法。使用石英晶体微量天平原位测量有机化合物在天然氧化硅表面上的吸附和解吸速率,并根据多组分有机物吸附引起的污染模型进行分析。在干燥和潮湿的环境中,在每个单组分系统和多组分​​系统中使用了三种有机化合物异丙醇,辛醇和邻苯二甲酸二乙酯。这些化合物在干燥气氛中的物理吸附和解吸速率常数高于在潮湿气氛中的物理吸附和解吸速率常数。但是,两种大气中的分子半径相似。因此,有机分子与表面之间的相互作用受到薄水层的影响,而有机分子之间的相互作用受到大气的影响较小。 (C)2015年作者。ECS发布。版权所有。

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