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Photocurrent enhancement mechanisms in bilayer nanofilm-based ultraviolet photodetectors made from ZnO and ZnS spherical nanoshells

机译:ZnO和ZnS球形纳米壳制成的基于双层纳米膜的紫外光电探测器中的光电流增强机制

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摘要

Hollow-sphere bilayer nanofilm-based ultraviolet light photodetectors made from ZnO and ZnS spherical nanoshells show enhanced photocurrent, which are comparable to or even better than those of other semiconductor nanostructures with different shapes. In this work, the photocurrent enhancement mechanisms of these bilayer nanofilm-based ultraviolet light photodetectors are explained, which could be attributed to the strong light absorption based on the whispering gallery mode resonances, the separation of the photogenerated carriers through the internal electric field within the bilayer nanofilms, the hopping-like electrical transport, and the effective charge injection from Cr/Au contacts to the nanofilms.
机译:由ZnO和ZnS球形纳米壳制成的基于空心球双层纳米膜的紫外光电探测器显示出增强的光电流,其与具有不同形状的其他半导体纳米结构相当或什至更好。在这项工作中,解释了这些基于双层纳米膜的紫外光电探测器的光电流增强机理,这可能归因于基于耳语画廊模式共振的强光吸收,光生载流子通过内部电场的分离。双层纳米膜,类似跳跃的电传输以及从Cr / Au接触到纳米膜的有效电荷注入。

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