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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >On the nature of the bronsted acidic groups on native and functionalized mesoporous siliceous SBA-15 as studied by benzylamine adsorption from solution
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On the nature of the bronsted acidic groups on native and functionalized mesoporous siliceous SBA-15 as studied by benzylamine adsorption from solution

机译:通过溶液中苄胺的吸附研究天然和功能化介孔硅质SBA-15上布朗斯台德酸基的性质

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摘要

The concentration and Bronsted acidity of surface silanol groups on mesoporous silica (SBA-15) has been studied by following the adsorption of benzylamine, BA, from water as a function of pH. The adsorbed amount of BA from water was compared to the maximum amount of BA that could be adsorbed from cyclohexane. Furthermore, the surface concentration and acidity of carboxylic acid functions on surface-functionalized SBA-15 was also studied, which allowed the relative surface concentration of remaining silanols to be obtained. Two types of silanols can be identified, where about (1)/(5) of the silanols have a pK(a) <= 2 and the remaining (4)/(5) of the silanols have a pK(a) of about 8.2. According to the literature, these two types of silanols can be identified as Q(3) and Q(2) silanols, respectively, of which the Q(3) silanols are more acidic. For the surface-functionalized materials, pK(a) values close to their respective intrinsic values are found for the carboxylic acid functions. However, irrespective of the method of surface functionalization, 50% or more of the accessible surface groups are silanols. The results thus suggest that the effective charge density is largely controlled by the (de)protonation of the silanol groups even for surface-functionalized mesoporous silica, which render the surface chemistry of the surface-functionalized silicas to be radically different from what simple schematic representations would suggest. The results are suggested to be of importance for reaching a predictive level of understanding for the behavior of mesoporous silica in a range of applications, as many of the foreseen applications for mesoporous silica involves water as the medium.
机译:通过跟踪水中苄胺(BA)的吸附随pH的变化,研究了介孔二氧化硅(SBA-15)上表面硅烷醇基的浓度和布朗斯台德酸度。将水中BA的吸附量与环己烷中BA的最大吸附量进行比较。此外,还对表面官能化的SBA-15上羧酸官能团的表面浓度和酸度进行了研究,从而获得了残留硅烷醇的相对表面浓度。可以确定两种类型的硅烷醇,其中大约(1)/(5)的硅烷醇的pK(a)<= 2,其余(4)/(5)的硅烷醇的pK(a)大约为8.2。根据文献,这两种类型的硅烷醇可以分别鉴定为Q(3)和Q(2)硅烷醇,其中Q(3)硅烷醇的酸性更高。对于表面官能化的材料,发现其羧酸官能团的pK(a)值接近其各自的固有值。然而,不管表面官能化的方法如何,50%或更多的可及表面基团是硅烷醇。因此,结果表明,即使对于表面官能化的介孔二氧化硅,有效的电荷密度也很大程度上由硅烷醇基团的(去质子化)控制,这使得表面官能化的二氧化硅的表面化学与简单的示意图完全不同。会建议。建议该结果对于在一系列应用中达到对中孔二氧化硅行为的理解的预测水平非常重要,因为许多预见的中孔二氧化硅应用都涉及水作为介质。

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