DocumentCode :
3363957
Title :
Flexible field emission devices using transparent ZnO nanowires on reduced graphene films
Author :
Lee, Kyung Eun ; Hwang, Jin Ok ; Kim, Sang Ouk
Author_Institution :
Korea Adv. Inst. of Sci. & Tehcnology, Daejeon, South Korea
fYear :
2011
fDate :
18-21 Oct. 2011
Firstpage :
303
Lastpage :
307
Abstract :
We present a transparent and flexible optoelectronic material composed of vertically aligned ZnO NWs grown on reduced graphene/PDMS substrates. Large-area reduced graphene films were prepared on PDMS substrates by chemical exfoliation from natural graphite via oxidative aqueous dispersion and subsequent thermal reduction. ZnO NWs were hydrothermally grown on the reduced grapheme film substrate and maintained their structural uniformity even in highly deformed states. The electrical contact between semiconducting ZnO NWs and the metallic graphene film was straightforwardly measured by electric force microscopy (EFM). It shows a typical metal-semiconductor ohmic contact without a contact barrier. Owing to the mechanical flexibility, transparency, and low contact barrier, the ZnO NWs/graphene hybrids show excellent field emission properties. Low turn-on field values of 2.0 V mm-1, 2.4 V mm-1, and 2.8 V mm-1 were measured for convex, flat, and concave deformations, respectively. Such variation of field emission properties were attributed to the modification of ZnO NWs emitter density upon mechanical deformation.
Keywords :
II-VI semiconductors; deformation; field emission; nanoelectronics; nanowires; ohmic contacts; semiconductor-metal boundaries; thin film devices; transparency; wide band gap semiconductors; zinc compounds; C; ZnO-C; chemical exfoliation; concave deformations; contact barrier; convex deformations; electric force microscopy; electrical contact; flat deformations; flexible field emission devices; hydrothermal growth; mechanical deformation; mechanical flexibility; metal-semiconductor ohmic contact; metallic graphene film; natural graphite; oxidative aqueous dispersion; reduced graphene film-PDMS substrates; semiconducting nanowires; structural uniformity; thermal reduction; transparent flexible optoelectronic material; transparent nanowires; turn-on field values; Electrodes; Films; Shape; Shape measurement; Silicon; Substrates; Zinc oxide;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Nanotechnology Materials and Devices Conference (NMDC), 2011 IEEE
Conference_Location :
Jeju
Print_ISBN :
978-1-4577-2139-7
Type :
conf
DOI :
10.1109/NMDC.2011.6155365
Filename :
6155365
Link To Document :
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