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The Nature of Silanol Groups on the Surfaces of Silica, Modified Silica and Some Silica Based Materials

机译:二氧化硅,改性二氧化硅和一些二氧化硅材料表面上硅烷醇基团的性质

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Silica gel, a material that is produced from the condensation polymerisation of silicic acid, contains surface silanol groups formed during the condensation. The silanol groups on the surface are mostly of free and vicinal silanol groups. These silanol groups can be modified in several different ways. Thermal treatment and hydrothermal treatment can be carried out to alter the concentration proportions between free and hydrogen bonded silanol groups on the surface. They can also be chemically treated with suitable chlorosilanes to modify the silanol groups into polar or non polar materials that can be used in separation science.This article explores the chemical nature of silanol groups on the surfaces of different materials. Near infrared reflectance spectroscopy was used as the instrumental technique in this study. The silanol groups classifications were made by analyzing the near infrared spectra obtained during the adsorption of water molecules. Absorption of the combination frequencies of water molecules in the region 5500- 5000 cm "' were used in characterizing the silanol groups on the surfaces. Second derivative technique was employed in the resolution and detailed analysis of these absorptions.The study reveals that the materials contain free, vicinal and gem silanol groups. Silica gel contains free and vicinal silanol groups, thermally treated silica gel contains fewer vicinal silanol groups compared to the base silica gel, and hydrothermally treated silica gel contains higher concentrations of vicinal silanol groups compared to the base silica gel. Furthermore, the chemically modified silica gel contains vicinal or geminal silanol groups depending on the type of functionality introduced.
机译:硅胶,由硅酸的缩聚产生的材料,含有在冷凝期间形成的表面硅烷醇基团。表面上的硅烷醇基团大多是自由和均硅烷醇基团。这些硅烷醇基团可以以几种不同的方式进行修饰。可以进行热处理和水热处理,以改变表面上的游离和氢键硅烷醇基之间的浓度比例。它们也可以用合适的氯硅烷化学处理,以将硅烷醇基团改变为可用于分离科学的极性或非极性材料。本文探讨了不同材料表面上的硅烷醇基团的化学性质。近红外反射光谱用作本研究中的仪器技术。通过分析在水分子吸附过程中获得的近红外光谱来进行硅烷醇基分类。区域5500-5000cm“'中水分子的组合频率的吸收在表面上表征硅烷醇基团。分辨率采用第二衍生物技术,并对这些吸收的详细分析。研究表明,材料含有自由,静脉和宝石硅烷醇组。硅胶含有游离和均匀的硅烷醇基团,与基硅胶相比,热处理的硅胶含有较少的酰基硅烷醇基团,与基二氧化硅相比,水热处理的硅胶含有较高浓度的偏僻硅烷醇基团凝胶。此外,根据引入的功能类型,化学改性的硅胶含有邻缘或胎硅烷醇基。

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