School of Chemical and Material Engineering , Jiangnan University , Wuxi , Jiangsu 214122 , China.
Key Lab of Advanced Molecular Engineering Materials , Baoji University of Arts and Science , Baoji 721013 , China.
ACS Appl Mater Interfaces. 2020 Jan 8;12(1):474-483. doi: 10.1021/acsami.9b14839. Epub 2019 Dec 17.
It is highly desired but remains a great challenge to develop non-noble metal heterogeneous catalysts to supersede noble metal catalysts for formic acid (FA) dehydrogenation and the corresponding transfer hydrogenation reactions. Herein, we developed a simple and feasible melamine-assisted pyrolysis strategy for the preparation of atomic cobalt-nitrogen (Co-N)-anchored mesoporous carbon with high metal loading (>6.8 wt %) and high specific surface area (750 m g). Systematic investigation reveals that both the organic carbon source polypyrrole and the nitrogen source melamine are crucial for the successful generation of such Co-N-based materials. The obtained samples (Co-N)@NC were demonstrated to be highly efficient and robust catalysts for FA dehydrogenation and formylation of quinolines through transfer hydrogenation, exhibiting a very high hydrogen production rate of 16 451 mL·g·h for FA dehydrogenation and affording excellent yields (up to 99%), selectivity (up to 98%), and stability for transfer hydrogenation. This work may provide a promising route for the fabrication of more low-cost metal-nitrogen catalysts for green fine chemical synthesis.
开发非贵金属多相催化剂替代贵金属催化剂用于甲酸(FA)脱氢和相应的转移加氢反应是人们非常期望的,但仍然是一个巨大的挑战。在此,我们开发了一种简单可行的三聚氰胺辅助热解策略,用于制备具有高金属负载量(>6.8wt%)和高比表面积(750m2/g)的原子钴-氮(Co-N)锚定介孔碳。系统研究表明,有机碳源吡咯和氮源三聚氰胺对于成功生成此类 Co-N 基材料都是至关重要的。所获得的样品(Co-N)@NC 被证明是 FA 脱氢和通过转移加氢对喹啉甲酰化反应的高效和稳定的催化剂,FA 脱氢的产氢速率高达 16451mL·g·h-1,并且对转移加氢具有优异的收率(高达 99%)、选择性(高达 98%)和稳定性。这项工作可能为绿色精细化学品合成提供了一种制造更多低成本金属-氮催化剂的有前途的途径。