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

机译:ZnO NR /石墨烯混合结构作为具有高透射率的先进光电器件

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摘要

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.
机译:本研究成功构建了由一维ZnO纳米棒(NRs)和二维合成石墨烯片组成的杂化结构(HS)。通过水热法获得均匀的ZnO NRs,并使其生长在已转移至聚对苯二甲酸乙二酯基材的石墨烯表面上。即使在以小曲率半径进行周期性弯曲之后,HS在可见光波长范围内仍显示出高透射率(约75%)。进行拉曼光谱和霍尔测量以验证结构的化学组成和电性能。与裸露的ZnO NRs相比,实现了ZnO NR /石墨烯HS的稳定电导,并且载流子迁移率的增加降低了带石墨烯的ZnO-石墨烯片的电阻。

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