Hybrid ZnO NR/graphene structures as advanced optoelectronic devices with high transmittance

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Abstract

A hybrid structure (HS) made of one-dimensional ZnO nanorods (NRs) and a two-dimensional synthesized graphene sheet was successfully constructed in this study. The uniform ZnO NRs were obtained by hydrothermal method and grown on a graphene surface that had been transferred to a polyethylene terephthalate substrate. The HS exhibited high transmittance (approximately 75%) over the visible wavelength range, even after cyclic bending with a small radius of curvature. Raman spectroscopy and Hall measurement were carried out to verify the chemical composition and electrical properties of the structure. Stable electrical conductance of the ZnO NR/graphene HS was achieved, and increase in carrier mobility decreased the resistance of the ZnO-with-graphene sheet in comparison with bare ZnO NRs. © 2013 Chung et al.; licensee Springer.

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Chung, R. J., Lin, Z. C., Yang, P. K., Lai, K. Y., Jen, S. F., & Chiu, P. W. (2013). Hybrid ZnO NR/graphene structures as advanced optoelectronic devices with high transmittance. Nanoscale Research Letters, 8(1), 1–5. https://doi.org/10.1186/1556-276X-8-350

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