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Автор Wang, Qing Hua
Автор Hersam, Mark C.
Дата выпуска 2011
dc.description Abstract
dc.description With exceptional carrier mobilities, mechanical strength, and optical transparency, graphene is a leading material for next-generation electronic devices. However, for most applications, graphene will need to be integrated with other materials, which motivates efforts to understand and tune its surface chemistry. In particular, the modification of graphene via organic functionalization holds promise for tuning the electronic properties of graphene, controlling interfaces with other materials, and tailoring surface chemical reactivity. Toward these ends, this article reviews recent work from our laboratory on noncovalent and covalent organic functionalization of graphene. Using ultrahigh vacuum scanning tunneling microscopy (UHV STM), the molecular ordering and electronic properties of organic adlayers on graphene are characterized at the molecular scale. In addition, UHV STM is employed to nanopattern these organic layers with sub-5 nm resolution, thus providing a pathway for producing graphene-based heteromolecular nanostructures.
Формат application.pdf
Издатель Cambridge University Press
Копирайт Copyright © Materials Research Society 2011
Тема Nanoscale
Тема surface chemistry
Тема electronic structure
Тема self-assembly
Тема scanning tunneling microscopy
Тема Technical Feature
Название Characterization and nanopatterning of organically functionalized graphene with ultrahigh vacuum scanning tunneling microscopy
Тип research-article
DOI 10.1557/mrs.2011.134
Electronic ISSN 1938-1425
Print ISSN 0883-7694
Журнал MRS Bulletin
Том 36
Первая страница 532
Последняя страница 542
Аффилиация Wang Qing Hua; Massachusetts Institute of Technology, Cambridge, MA 02139, USA; qhwang@mit.edu
Аффилиация Hersam Mark C.; Materials Science and Engineering, Northwestern University, Evanston, IL 60208-3108 USA; m-hersam@northwestern.edu
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