催化作用
纤维二糖
化学
水解
金属有机骨架
组合化学
加氢脱氧
异构化
果糖
重氮
级联反应
有机化学
选择性
吸附
纤维素酶
作者
Qiang Deng,Xuemeng Hou,Yao Zhong,Jiawei Zhu,Jun Wang,Jianxin Cai,Zheling Zeng,Ji‐Jun Zou,Shuguang Deng,Tatchamapan Yoskamtorn,Edman Tsang
标识
DOI:10.1002/ange.202205453
摘要
Abstract One pot synthesis of 2,5‐dimethylfuran (2,5‐DMF) from saccharides under mild conditions is of importance for the production of biofuel and fine chemicals. However, the synthesis requires a multitude of active sites and suffers from slow kinetics due to poor diffusion in most composite catalysts. Herein, a metal‐acid functionalized 2D metal‐organic framework (MOF; Pd/NUS‐SO 3 H), as an ultrathin nanosheet of 3–4 nm with Lewis acid, Brønsted acid, and metal active sites, was prepared based on the diazo method for acid modification and subsequent metal loading. This new composite catalyst gives substantially higher yields of DMF than all reported catalysts for different saccharides (fructose, glucose, cellobiose, sucrose, and inulins). Characterization suggests that a cascade of reactions including polysaccharide hydrolysis, isomerization, dehydration, and hydrodeoxygenation takes place with rapid molecular interactions.
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