脱氢
串联
催化作用
化学
化学反应
动力学
化学键
基质(水族馆)
光化学
化学物理
氢
化学计量学
材料科学
可逆反应
联轴节(管道)
反应机理
化学动力学
反应中间体
工作(物理)
键裂
反应速率
氢键
纳米颗粒
化学链燃烧
空位缺陷
动能
电子
过程(计算)
计算化学
纳米技术
化学过程
组合化学
蒙特卡罗方法
化学平衡
化学工程
作者
HuiFang Wu,Q. Q. Wang,Xuanlin Guo,Xinyang Han,Yang Zhao,Junting Feng
标识
DOI:10.1002/anie.202519253
摘要
Abstract Coupling hydrogenation and dehydrogenation is of great significance, as both are pivotal bond reconstruction modes and co‐occur in about 10% of chemical syntheses. However, stoichiometric imbalance often necessitates exogenous hydrogen, which causes “seesaw effect” and inhibits dehydrogenation, challenging thermodynamics and kinetics of tandem process. Herein, we propose a dynamic strategy based on chemical looping to modulate hydrogen species. We designed Ru n @NiCu‐V M catalyst with metal vacancy (V M ) induced “electron allocator” properties, enabling reversible electron capture and release via chemical looping, which drives the neutral H· to convert into H − &H + , while simultaneously completing electron cycling. The converted H − &H + promote hydrogenation of polar ─C═N bonds in the tandem reaction of 5‐hydroxymethylfurfural to 2,5‐furandimethanamine, while neutral H· enhances the dehydrogenation rate by avoiding charge repulsion with H − &H + generated from dehydrogenation of ─CH 2 OH. The coupled hydrogenation‐dehydrogenation process achieves a 1.7‐fold rate enhancement, delivers 92% 2,5‐furandimethanamine yield, outperforms most reported catalysts, and exhibits broad substrate applicability.
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