Cu nanoparticles embedded on reticular chitosan-derived N-doped carbon: Application to the catalytic hydrogenation of alkenes, alkynes and N-heteroarenes

被引:13
|
作者
Hammi, Nisrine [1 ,2 ]
Chen, Shuo [1 ]
Michon, Christophe [1 ,3 ]
Royer, Sebastien [1 ]
El Kadib, Abdelkrim [2 ]
机构
[1] Univ Lille, Univ Artois, UMR UCCS Unite Catalyse & Chim Solide 8181, Cent Lille,CNRS, F-59000 Lille, France
[2] Euro Med Univ Fes UEMF, Euromed Res Ctr, Engn Div, Route Meknes, Fes 30070, Morocco
[3] Univ Strasbourg, Univ Haute Alsace, CNRS, ECPM,LIMA UMR 7042, 25 Rue Becquere, FR-67087 Strasbourg, France
来源
MOLECULAR CATALYSIS | 2022年 / 519卷
关键词
Copper nanoparticles; N-doped carbon; Chitosan; Hydrogenation catalysis; METAL-ORGANIC-FRAMEWORK; COBALT-NANOPARTICLES; COPPER NANOPARTICLES; ASYMMETRIC HYDROGENATION; PALLADIUM NANOPARTICLES; SELECTIVE HYDROGENATION; HETEROGENEOUS CATALYST; EFFICIENT; CO; DEHYDROGENATION;
D O I
10.1016/j.mcat.2021.112104
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Applying biomass-waste as catalysts and catalytic supports is gaining a tremendous interest owing to its expected outcomes in terms of cost effectiveness and sustainability. In this context, we herein disclose a straightforward encapsulation of nanosized copper on hierarchically porous, biomass-derived nitrogen-containing carbon framework. Our approach uses chitosan derived from the marine shell-fish wastes as a cheap, sustainable carbon and nitrogen source, melamine as nitrogen provider and ethylenediaminetetraacetic acid as a cross-linker to induce the reticular network, much suitable for restricting the growth of the metal seeds. The resulting copper grown on nitrogen-doped carbon, bearing relatively large surface area (106 m(2).g(-1)) and a large group of well-dispersed Cu nanoparticles (average of 2 nm) even with high Cu loading (41 wt%), exhibits catalytic activity for the hydrogenation of unsaturated double and triple carbon-carbon bonds and heteroaryles. This sustainable design of catalyst, using affordable copper and cheap biowaste, could discard palladium and other expensive elements loaded on tedious synthetic supports from the library of heterogeneous solids intended for fine chemical synthesis.
引用
收藏
页数:9
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