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Hierarchical SAPO‐34 Architectures with Tailored Acid Sites using Sustainable Sugar Templates

机译:使用可持续糖模板的带有定制酸位的分层SAPO‐34架构

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摘要

In a distinct, bottom‐up synthetic methodology, monosaccharides (fructose and glucose) and disaccharides (sucrose) have been used as mesoporogens to template hierarchical SAPO‐34 catalysts. Detailed materials characterization, which includes solid‐state magic angle spinning NMR and probe‐based FTIR, reveals that, although the mesopore dimensions are modified by the identity of the sugar template, the desirable acid characteristics of the microporous framework are retained. When the activity of the hierarchical SAPO‐34 catalysts was evaluated in the industrially relevant Beckmann rearrangement, under liquid‐phase conditions, the enhanced mass‐transport properties of sucrose‐templated hierarchical SAPO‐34 were found to deliver a superior yield of ϵ‐caprolactam.
机译:在一种独特的,自下而上的合成方法中,单糖(果糖和葡萄糖)和二糖(蔗糖)已被用作介孔原,用于模板化SAPO-34催化剂。详细的材料表征(包括固态魔术角旋转NMR和基于探针的FTIR)表明,尽管中孔尺寸因糖模板的身份而改变,但仍保留了微孔骨架所需的酸特性。当在工业上相关的贝克曼重排中评估分级SAPO-34催化剂的活性时,在液相条件下,发现蔗糖模板化分级SAPO-34的增强的传质性能可提供较高的yield-己内酰胺收率。

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