Organic Synthesis on Graphene

被引:57
作者
Koehler, Fabian M. [1 ]
Stark, Wendelin J. [1 ]
机构
[1] ETH, Inst Chem & Bioengn, Dept Chem & Appl Biosci, CH-8093 Zurich, Switzerland
关键词
CROSS-COUPLING REACTIONS; SINGLE-LAYER; COVALENT CHEMISTRY; CARBON NANOTUBES; FUNCTIONALIZATION; NANOPARTICLES; SURFACE; SPECTROSCOPY; REACTIVITY; BLACK;
D O I
10.1021/ar300125w
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Graphene is a two-dimensional crystalline carbon allotrope that has fascinated researchers worldwide and has extended the interest in carbon structures such as fullerenes and nanotubes. In this Account, we use electrical characterization tools to study chemistry on supported graphene. These experiments elucidate the way covalently bound phenyl units can change graphenes physical properties. Can we use chemistry to control electronic properties of graphene? What can we learn from well-known carbon allotropes like fullerenes? The surfaces of fullerenes and graphene show distinct differences in reactivity because of the high strain of sp(2) carbon in fullerenes compared with the complete lack of strain in graphene. Diazonium chemistry provides a versatile tool for attaching phenyl units covalently to carbon to produce advanced materials and electronic components, but diazonium-based carbon chemistry is strongly influenced by strain. Although fullerenes are highly reactive, graphite (stacks of graphene) remains relatively inert. We chemically introduce n- and p-like doping patterns in two-dimensional graphene using photolithography and extend the ability to chemically control doping to the chemical design of conducting and insulating areas. Thereby we can shape graphene surfaces into functional electronic devices. This Account also describes multistep synthesis on graphene-coated nanoparticles and the introduction of various functional groups on graphene surfaces. Only few functional groups can be produced directly via diazonium chemistry. To overcome this issue, we used these functional groups as starting points for more demanding organic reactions. We covalently attached chelating agents, catalysts, or polymers on the carbon surface. These more complex reactions facilitate the design of electronic modifications, intergraphene connections, and anchors for polymer incorporation. Diazonium chemistry forms strong covalent bridges between graphene and other areas of chemistry.
引用
收藏
页码:2297 / 2306
页数:10
相关论文
共 68 条
[31]   Towards electron transport measurements in chemically modified graphene: effect of a solvent [J].
Jacobsen, Arnhild ;
Koehler, Fabian M. ;
Stark, Wendelin J. ;
Ensslin, Klaus .
NEW JOURNAL OF PHYSICS, 2010, 12
[32]   How do aryl groups attach to a graphene sheet? [J].
Jiang, De-en ;
Sumpter, Bobby G. ;
Dai, Sheng .
JOURNAL OF PHYSICAL CHEMISTRY B, 2006, 110 (47) :23628-23632
[33]   Click Chemistry on Solution-Dispersed Graphene and Monolayer CVD Graphene [J].
Jin, Zhong ;
McNicholas, Thomas P. ;
Shih, Chih-Jen ;
Wang, Qing Hua ;
Paulus, Geraldine L. C. ;
Hilmer, Andrew ;
Shimizu, Steven ;
Strano, Michael S. .
CHEMISTRY OF MATERIALS, 2011, 23 (14) :3362-3370
[34]   Nucleation and growth of functionalized aryl films on graphite electrodes [J].
Kariuki, JK ;
McDermott, MT .
LANGMUIR, 1999, 15 (19) :6534-6540
[35]   Chemical modification of graphene characterized by Raman and transport experiments [J].
Koehler, Fabian M. ;
Jacobsen, Arnhild ;
Ihn, Thomas ;
Ensslin, Klaus ;
Stark, Wendelin J. .
NANOSCALE, 2012, 4 (12) :3781-3785
[36]   Selective Chemical Modification of Graphene Surfaces: Distinction Between Single- and Bilayer Graphene [J].
Koehler, Fabian M. ;
Jacobsen, Arnhild ;
Ensslin, Klaus ;
Stampfer, Christoph ;
Stark, Wendelin J. .
SMALL, 2010, 6 (10) :1125-1130
[37]   Magnetic EDTA: coupling heavy metal chelators to metal nanomagnets for rapid removal of cadmium, lead and copper from contaminated water [J].
Koehler, Fabian M. ;
Rossier, Michael ;
Waelle, Markus ;
Athanassiou, Evagelos K. ;
Limbach, Ludwig K. ;
Grass, Robert N. ;
Guenther, Detlef ;
Stark, Wendelin J. .
CHEMICAL COMMUNICATIONS, 2009, (32) :4862-4864
[38]   Permanent Pattern-Resolved Adjustment of the Surface Potential of Graphene-Like Carbon through Chemical Functionalization [J].
Koehler, Fabian M. ;
Luechinger, Norman A. ;
Ziegler, Dominik ;
Athanassiou, Evagelos K. ;
Grass, Robert N. ;
Rossi, Antonella ;
Hierold, Christofer ;
Stemmer, Andreas ;
Stark, Wendelin J. .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2009, 48 (01) :224-227
[39]   C-60 - BUCKMINSTERFULLERENE [J].
KROTO, HW ;
HEATH, JR ;
OBRIEN, SC ;
CURL, RF ;
SMALLEY, RE .
NATURE, 1985, 318 (6042) :162-163
[40]   ORGANIC-REACTIONS IN AQUEOUS-MEDIA - WITH A FOCUS ON CARBON-CARBON BOND FORMATION [J].
LI, CJ .
CHEMICAL REVIEWS, 1993, 93 (06) :2023-2035