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二维材料与 ZnO 纳米结构的维度杂化结构通过 pH 介导的水热生长用于柔性紫外光探测器。

Dimensional-Hybrid Structures of 2D Materials with ZnO Nanostructures via pH-Mediated Hydrothermal Growth for Flexible UV Photodetectors.

机构信息

Thin Film Materials Research Center, Korea Research Institute of Chemical Technology , Yuseong, P.O. Box 107, Daejeon 305-600, Republic of Korea.

出版信息

ACS Appl Mater Interfaces. 2017 May 3;9(17):15031-15037. doi: 10.1021/acsami.7b01330. Epub 2017 Apr 24.

Abstract

Complementary combination of heterostructures is a crucial factor for the development of 2D materials-based optoelectronic devices. Herein, an appropriate solution for fabricating complementary dimensional-hybrid nanostructures comprising structurally tailored ZnO nanostructures and 2D materials such as graphene and MoS is suggested. Structural features of ZnO nanostructures hydrothermally grown on graphene and MoS are deliberately manipulated by adjusting the pH value of the growing solution, which will result in the formation of ZnO nanowires, nanostars, and nanoflowers. The detailed growth mechanism is further explored for the structurally tailored ZnO nanostructures on the 2D materials. Furthermore, a UV photodetector based on the dimensional-hybrid nanostructures is fabricated, which demonstrates their excellent photocurrent and mechanical durability. This can be understood by the existence of oxygen vacancies and oxygen-vacancies-induced band narrowing in the ZnO nanostructures, which is a decisive factor for determining their photoelectrical properties in the hybrid system.

摘要

异质结构的互补组合是基于 2D 材料的光电设备发展的关键因素。在此,提出了一种合适的方法来制备由结构剪裁的 ZnO 纳米结构和二维材料(如石墨烯和 MoS)组成的互补维度混合纳米结构。通过调节生长溶液的 pH 值,故意操纵在石墨烯和 MoS 上水热生长的 ZnO 纳米结构的结构特征,这将导致 ZnO 纳米线、纳米星和纳米花的形成。进一步探索了二维材料上结构剪裁的 ZnO 纳米结构的详细生长机制。此外,基于维度混合纳米结构制造了一个 UV 光电探测器,展示了其优异的光电流和机械耐久性。这可以通过 ZnO 纳米结构中氧空位的存在以及氧空位诱导的带缩窄来理解,这是决定混合系统中光电性能的决定性因素。

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