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离子液体共价键功能化氧化石墨烯负载催化材料催化反应研究进展
Progress in Catalysis of Ionic Liquid Covalently Functionalized Graphene Oxide Supported Catalysts

查看参考文献73篇

陈松丛 1   韩峰 2 *   刘建华 3 *   夏春谷 3   马建霞 1  
文摘 氧化石墨烯由于其独特的结构和性能赋予了它作为催化剂的先天优势,功能化的氧化石墨烯为其应用领域的拓展和效果提升提供了更多的发展契机,成为目前的研究趋势,离子液体功能化的氧化石墨烯结合二者自身优势的基础上,并由于协同作用具有更加优异的催化性能,广泛应用于众多反应中.我们针对离子液体共价键功能化的氧化石墨烯负载催化剂常见的催化反应,包括环加成反应,氧化反应,偶联反应,酯交换反应,乌尔曼反应,重排反应,光催化和电催化在近年来的研究进展进行了相关综述.
其他语种文摘 The unique structure and properties ofgraphene oxide give it inherent advantages as a catalyst. The functionalized graphene oxide provides more opportunities for development and improvement of its application fields. It has become the current research trend. The ionic liquids functionalized graphene oxide combines both its own advantages with graphene oxide and ionic liquid and has more excellent catalytic performance due to synergistic effect. This review summarizes the common catalytic reactions of ionic liquid functionalized graphene oxide supported catalysts, including cycloaddition reaction,oxidation reaction,coupling reaction,transesterification reaction,Ullmann reaction,rearrangement reaction,photocatalysis and electrocatalysis reaction,etc.
来源 分子催化 ,2018,32(4):382-396 【扩展库】
关键词 氧化石墨烯 ; 离子液体 ; 催化 ; 功能化
地址

1. 中国科学院兰州文献情报中心, 甘肃, 兰州, 730000  

2. 山东农业大学化学与材料科学学院, 山东, 泰安, 271018  

3. 中国科学院兰州化学物理研究所, 羰基合成与选择氧化国家重点实验室, 甘肃, 兰州, 730000

语种 中文
文献类型 综述型
ISSN 1001-3555
学科 化学
基金 国家自然科学基金项目 ;  甘肃省科技厅项目
文献收藏号 CSCD:6329012

参考文献 共 73 共4页

1.  Geim A K. Graphene: Status and prospects. Science,2009,324(5934):1530-1534 被引 762    
2.  Dreyer D R. From conception to realization: An historial account of graphene and some perspectives for its future. Angew Chem Inter Edit,2010,49(49):9336-9344 被引 26    
3.  Novoselov K S. A roadmap for graphene. Nature,2012,490(7419):192-200 被引 413    
4.  Geim A K. The rise of graphene. Nature Materials,2007,6:183-191 被引 2268    
5.  Li Y. Cover picture: Asymmetric catalytic aza-diels-alder/ring-closing cascade reaction forming bicyclic azaheterocycles by trienamine catalysis (Chem. Eur. J. 1/2017). Chem-A Eur J,2017,23(1):1-33 被引 1    
6.  Zhu Y. Graphene and graphene oxide: Synthesis,properties,and applications. Adv Mater,2010,22(35):3906-3924 被引 261    
7.  Dreyer D R. The chemistry of graphene oxide. Chem Soc Rev,2010,39(1):228-240 被引 423    
8.  Loh K P. The chemistry of graphene. J Mater Chem,2010,20(12):2277-2289 被引 60    
9.  Scheuermann G M. Palladium nanoparticles on graphite oxide and its functionalized graphene derivatives as highly active catalysts for the suzukimiyaura coupling reaction. J Amer Chem Soc,2009,131(23):8262-8270 被引 54    
10.  Cheng Y. Graphene-supported metal/metal oxide nanohybrids: synthesis and applications in heterogeneous catalysis. Catal Sci & Technol,2015,5(8):3903-3916 被引 7    
11.  Georgakilas V. Noncovalent functionalization of graphene and graphene oxide for energy materials,biosensing,catalytic,and biomedical applications. Chem Rev,2016,116(9):5464-5519 被引 89    
12.  Luo W. A brief review of the synthesis and catalytic applications of graphene-coated oxides. Chemcatchem,2017,9(13):2432-2442 被引 4    
13.  Mohammadi O. Recent advances in organic reactions catalyzed by graphene oxide and sulfonated graphene as heterogeneous nanocatalysts: a review. New J Chem,2017,41(20):11471-11497 被引 4    
14.  Sabater S. In non-covalent interactions in the synthesis and design of new compounds,2016 被引 1    
15.  黄国家. 石墨烯和氧化石墨烯的表面功能化改性. 化学学报,2016,2016(10):789-799 被引 48    
16.  Parvulescu V I. Catalysis in ionic liquids. Chem Rev,2007,107(6):2615-2665 被引 92    
17.  Giernoth R. Task-specific ionic liquids. Angew Chem Inter Edit,2010,49(16):2834-2839 被引 28    
18.  Wilkes J S. Introduction in ionic liquids in synthesis,2003 被引 1    
19.  Rogers R D. Ionic liquids--solvents of the future?. Sci,2003,302(5646):792-793 被引 237    
20.  Wasserscheid P. Ionic liquids-new"solutions" for transition metal catalysis. Angew Chem Inter Edit,2000,39(21):3772-3789 被引 324    
引证文献 6

1 汪兵洋 非共价键功能化石墨烯/碳纳米管负载型金属配合物催化剂及催化反应中的应用 分子催化,2019,33(1):90-101
被引 6

2 王晓晨 介孔聚离子液体的可控合成及在常压CO_2环加成反应中应用 分子催化,2019,33(2):181-189
被引 2

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