Electrophilic-nucleophilic properties as a factor in the formation of antifriction and hydrophobic properties of surface-modified metals with ammonium and organosilicon compounds

A. Syrkov, V. R. Kabirov, Alexander P. Pomogaibin, Ngo Kuok Kkhan
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引用次数: 1

Abstract

Stabilisation of the functional properties of dispersed and compact metals, as well as the regulation of their reactivity, improvement of water-repellent, antifriction and anti-corrosion properties by creating the protective films on the surface is an urgent problem in relation to obtaining new materials. Previously, research conducted at REC “Nanotechnology” of the St. Petersburg Mining University proved that chemisorption of ethylhydridesiloxane vapours together with surfactants based on quaternary ammonium compounds has a beneficial effect on the water-repellent properties of metals. In order to obtain the physicochemical mechanism of the hydrophobisation of the surface of modified dispersed metals for the firsttime, the study of the electrophilic-nucleophilic properties of the active substances of the surface modifiers of metals was carried out using the methods of quantum-chemical modelling using HyperChem software package. The dipole moment, energy of the highest occupied and the lowest unoccupied molecular orbitals, electrophilic-nucleophilic properties were determined. The series of enhancement of  ucleophilic/electrophilic properties and dipole moment for modifiers were obtained. The donor-acceptor properties, the differences in the characteristics of the molecules of alkamon, triamon, and hydrophobic silicone organic liquid were quantitatively and qualitatively established. The regularities of the formation of hydrophobic and antifriction properties in the composition of industrial oil I-20-surface-modified metal with various electrophilic-nucleophilic properties of the applied substances
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亲电亲核性质是与铵盐和有机硅化合物进行表面修饰的金属形成抗摩擦和疏水性质的一个因素
分散和致密金属的功能特性的稳定,以及它们的反应性的调节,通过在表面形成保护膜来改善防水、抗摩擦和抗腐蚀性能是获得新材料的一个紧迫问题。此前,圣彼得堡矿业大学REC“纳米技术”进行的研究证明,乙基氢脱硅氧烷蒸汽与基于季铵盐化合物的表面活性剂的化学吸附对金属的防水性能有有益的影响。为了首次获得改性分散金属表面疏水的物理化学机理,利用HyperChem软件包,采用量子化学建模的方法对金属表面改性剂活性物质的亲电亲核性质进行了研究。测定了偶极矩、最高占位轨道和最低未占位轨道的能量、亲电亲核性质。得到了改性剂对其亲核/亲电性能和偶极矩的一系列增强。定量和定性地建立了给受体性质,以及alkamon、triamon和疏水有机硅液体分子特征的差异。研究了工业油i -20表面改性金属组成中疏水和抗摩擦性能的形成规律,并与应用物质的各种亲电亲核性质进行了比较
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