2007
DOI: 10.1021/la062450w
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On the Nature of the Brønsted Acidic Groups on Native and Functionalized Mesoporous Siliceous SBA-15 as Studied by Benzylamine Adsorption from Solution

Abstract: The concentration and Brønsted 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… Show more

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Cited by 155 publications
(156 citation statements)
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“…A more detailed comparison of the spectra suggests that the copper coordination in Cu II T more closely resembles the tetra-nitrogen environment of homogeneous [Cu II (2) 48 or water yields larger g || values (Table 6). 49 The residual silica silanol groups, with a pK a near that of a carboxylic acid (~5), 47 are potential oxygen ligands, though water is also possible.…”
Section: Discussionmentioning
confidence: 99%
“…A more detailed comparison of the spectra suggests that the copper coordination in Cu II T more closely resembles the tetra-nitrogen environment of homogeneous [Cu II (2) 48 or water yields larger g || values (Table 6). 49 The residual silica silanol groups, with a pK a near that of a carboxylic acid (~5), 47 are potential oxygen ligands, though water is also possible.…”
Section: Discussionmentioning
confidence: 99%
“…The low activity is attributed to the weak Brønsted acidity of the surface silanols [34]. For Tp-SBA-15, the conversion after 120 min had increased to 61%, while the selectivity for HMF remained at 52%.…”
Section: Reactivity In Fructose Dehydrationmentioning
confidence: 99%
“…The hydrolysis of DCNP observed upon addition of a base to the nanoparticles suspensions is tentatively related to a silanol deprotonation process. 33 This deprotonation generated nucleophilic sites in the nanoparticle surface that are able to react with the electrophilic phosphorus atom presented in the structure of DCNP.…”
Section: A B C Dmentioning
confidence: 99%