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Tin Silsesquioxanes as Models for the 'Open' Site in Tin-Containing Zeolite Beta

机译:TIN Silsesquioxans作为含锡沸石β的“开放”遗址的模型

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摘要

The use of biomass as a resource to produce value-added products has garnered significant interest as a means of reducing reliance on fossil fuels. This task is complicated by the complex, highly functionalized nature of abundant biomass derivatives, such as glucose. Tin-containing zeolite Beta (Sn-Beta) can selectively isomerize glucose to fructose through a 1,2-intramolecular hydride shift (1,2-HS) or selectively produce mannose through a 1,2-intramolecular carbon shift (1,2-CS) by titration of the silanol groups with sodium (Na-Sn-Beta). To understand the structure-activity relationships between the conditions of the active sites in the zeolite, two molecular models (tin silsesquioxanes) of the tin sites in the zeolite were synthesized. Tin silsesquioxanes that contain an octahedral tin site with and without an adjacent silanol group selectively form fructose through a 1,2-HS and mannose through a 1,2-CS, respectively, and provide further evidence for the nature of the active sites in Sn-Beta.
机译:使用生物量作为生产增值产品的资源已经获得了显着的兴趣,作为减少对化石燃料依赖的手段。这项任务对丰满的生物量衍生物(例如葡萄糖)的复杂,高度官能化性质复杂化。含锡的沸石β(Sn-Beta)可以通过1,2分子内氢化物移位(1,2-HS)选择性地异构化以果糖,或者通过1,2-分子内碳换碳选择性地产生甘露糖(1,2- CS)用硅烷醇基团用钠(Na-Sn-β)滴定。为了了解沸石中活性位点的条件之间的结构 - 活性关系,合成了沸石中锡位点的两个分子模型(锡倍半硅氧烷)。锡倍半硅氧烷含有八面体锡网的八半锡,分别通过1,2-HS和甘露糖选择性地形成果糖,分别通过1,2-CS甘露糖,并为SN中活性部位的性质提供进一步的证据-beta。

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