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Characterization of silica xerogels surfaces by inverse gas chromatography (IGC)

机译:反相气相色谱法(IGC)表征二氧化硅干凝胶表面

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Silylated silica xerogels, with controlled specific surface area and porosity, were prepared by a two-step procedure. In the first step, hydrogels were treated "in-situ" with hexamethyldisiloxane (HMDS) in the presence of 2-propanol and acid. In the second step, the hydrophobic gel was transferred into an organic solvent, the residual water removed by azeotropic distillation and the dried xerogel isolated by evaporating the solvent. Using this procedure, structure collapse of the hydrogels was minimized and it was possible to make xerogels with controlled specific surface area and porosity by varying the aging conditions of the hydrogels. The surface properties of both the untreated and the 'in-situ" treated silica xerogels were examined by inverse gas chromatography (IGC) at either infinite dilution conditions (IGC-ID) or finite concentration conditions (IGC-FD). The former method was used to monitor the thermodynamic parameters of adsorption of molecular probes in interaction with the sites having the highest energies, while the latter method was used to provide information about the surface energy heterogeneity of the whole surface. The results for the xerogels are also compared to those obtained on untreated and silylated fumed silicas. After silylation, a systematical surface energy decrease has been observed at both ID and FD conditions of IGC for the two types of silica. However, the modified xerogels with higher surface coverage than silylated fumed silica show some different behaviors.
机译:通过两步法制备具有受控比表面积和孔隙率的甲硅烷基化二氧化硅干凝胶。第一步,在2-丙醇和酸的存在下,用六甲基二硅氧烷(HMDS)对水凝胶进行“原位”处理。在第二步中,将疏水凝胶转移到有机溶剂中,通过共沸蒸馏除去残留的水,并通过蒸发溶剂分离干燥的干凝胶。使用该程序,水凝胶的结构破坏最小化,并且可以通过改变水凝胶的老化条件来制造具有受控比表面积和孔隙率的干凝胶。通过逆气相色谱法(IGC)在无限稀释条件(IGC-ID)或有限浓度条件(IGC-FD)下检查未处理和“原位”处理的二氧化硅干凝胶的表面性能。用于监测与最高能量的位点相互作用的分子探针吸附的热力学参数,而使用后一种方法提供有关整个表面的表面能异质性的信息,并将干凝胶的结果与那些进行比较硅烷化后,两种类型的二氧化硅在IGC的ID和FD条件下均观察到系统表面能的系统降低,但是,改性后的干凝胶比硅烷化的气相二氧化硅具有更高的表面覆盖率行为。

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