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Scalable ZnO nanotube arrays grown on CVD-graphene films
Author(s) -
Junboum Park,
Hongseok Oh,
J. Park,
N.-J. Kim,
Hyeonseok Yoon,
GyuChul Yi
Publication year - 2016
Publication title -
apl materials
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.571
H-Index - 60
ISSN - 2166-532X
DOI - 10.1063/1.4964490
Subject(s) - materials science , graphene , chemical vapor deposition , nanotube , nanotechnology , nanomaterials , amorphous solid , wafer , scanning electron microscope , transmission electron microscopy , carbon nanotube , composite material , chemistry , organic chemistry
We report the growth of wafer-scale arrays of individually position-controlled and vertically aligned ZnO nanotube arrays on graphene deposited by chemical vapor deposition (CVD-graphene). Introducing two-dimensional layered materials such as graphene as a growth buffer has recently been suggested for growing nanomaterials on traditionally incompatible substrates. However, their growth has been restricted to small areas or had limited controllability. Here, we study the distinct growth behavior of ZnO on CVD-graphene that makes the selective area growth of individual nanostructures on its surface difficult, and propose a set of methods to overcome this. The resulting nanotube arrays, as examined by scanning electron microscopy and transmission electron microscopy, exhibited uniform morphologies and high structural quality over a large area and could be prepared on a broad variety of substrates, including amorphous, metallic, or flexible substrates

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