首站-论文投稿智能助手
典型文献
Magnetic graphene oxide-anchored Ni/Cu nanoparticles with a Cu-rich surface for transfer hydrogenation of nitroaromatics
文献摘要:
The bimetallic nanoparticles compositing of Ni-rich core and Cu-rich shell(Ni/Cu NPs)were successfully synthesized by a liquid-phase thermal decomposition method.The content of copper and nickel in Ni/Cu NPs was controllable by adjusting the ratio of two metal precursors,copper formate(Cuf)and nickel acet-ate tetrahydrate(Ni(OAc)2:4H2O).Ni/Cu NPs were further anchored on graphene oxide(GO)to prepare a magnetic composite catalyst,called Ni/Cu-GO.The dispersibility of Ni/Cu NPs in solution was enhanced by GO anchoring to prevent the sintering and aggregation during the reaction process,thereby ensuring the catalytic and cycling performance of the catalyst.The catalytic transfer hydrogenation(CTH)reaction of nitroaromatics was investigated when ammonia borane was used as the hydrogen source.Cu domi-nated the main catalytic role in the reaction,while Ni played a synergistic role of catalysis and providing magnetic properties for separation.The Ni7/Cu3-GO catalyst exhibited the best catalytic performance with the conversion and yield of 99%and 96%,respectively,when 2-methyl-5-nitrophenol was used as the substrate.The Ni7/Cu3-GO catalyst also exhibited excellent cyclic catalytic performance with the 5-amino-2-methylphenol yield of above 90%after six cycles.In addition,the Ni7/Cu3-GO catalyst could be quickly recycled by magnetic separation.Moreover,the Ni7/Cu3-GO catalyst showed good catalytic performance for halogen-containing nitroaromatics without dehalogenation.
文献关键词:
作者姓名:
Hongbin Shi;Qing Liu;Xiaofeng Dai;Teng Zhang;Yuling Shi;Tao Wang
作者机构:
State Key Lab of Chemical Engineering,Department of Chemical Engineering,Tsinghua University,Beijing 100084,China
引用格式:
[1]Hongbin Shi;Qing Liu;Xiaofeng Dai;Teng Zhang;Yuling Shi;Tao Wang-.Magnetic graphene oxide-anchored Ni/Cu nanoparticles with a Cu-rich surface for transfer hydrogenation of nitroaromatics)[J].中国化学工程学报(英文版),2022(10):235-246
A类:
Cuf,acet,tetrahydrate,Ni7
B类:
Magnetic,graphene,oxide,anchored,nanoparticles,rich,surface,transfer,hydrogenation,nitroaromatics,bimetallic,compositing,core,shell,NPs,were,successfully,synthesized,liquid,phase,thermal,decomposition,method,content,copper,nickel,was,controllable,adjusting,two,precursors,formate,OAc,4H2O,further,prepare,magnetic,composite,catalyst,called,dispersibility,solution,enhanced,anchoring,prevent,sintering,aggregation,during,reaction,process,thereby,ensuring,catalytic,cycling,performance,CTH,investigated,when,ammonia,borane,used,source,domi,nated,main,role,while,played,synergistic,catalysis,providing,properties,separation,Cu3,exhibited,best,conversion,yield,respectively,nitrophenol,substrate,also,excellent,cyclic,amino,methylphenol,above,after,six,cycles,In,addition,could,quickly,recycled,Moreover,showed,good,containing,without,dehalogenation
AB值:
0.496112
相似文献
Ultra-small platinum nanoparticles segregated by nickle sites for efficient ORR and HER processes
Lvhan Liang;Huihui jin;Huang Zhou;Bingshuai Liu;Chenxi Hu;Ding Chen;Jiawei Zhu;Zhe Wang;Hai-Wen Li;Suli Liu;Daping He;Shichun Mu-State Key Laboratory of Advanced Technology for Materials Synthesis and Processing,Wuhan University of Technology,Wuhan 430070,Hubei,China;Foshan Xianhu Laboratory of the Advanced Energy Science and Technology,Guangdong Laboratory,Xianhu Hydrogen Valley,Foshan 528200,Guangdong,China;Hubei Engineering Research Center of RF-Microwave Technology and Application,Wuhan University of Technology,Wuhan 430070,Hubei,China;Platform of Inter/Transdisciplinary Energy Research,International Research Center for Hydrogen Energy,International Institute for Carbon-Neutral Energy Research,Yushu University,Fukuoka 819-0395,Japan;Key Laboratory of Advanced Functional Materials of Nanjing,Nanjing Xiaozhuang University,Nanjing 211171,Jiangsu,China
机标中图分类号,由域田数据科技根据网络公开资料自动分析生成,仅供学习研究参考。