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Broad-band three dimensional nanocave ZnO thin film photodetectors enhanced by Au surface plasmon resonance

机译:宽带三维nanocave氧化锌薄电影光电探测器增强了非盟表面等离子体共振

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摘要

ZnO semiconductor films with periodic 3D nanocave patterns were fabricated by the thermal nano-imprinting technology, which is promising for photodetectors with enhanced light harvesting capability. The Au nanoparticles were further introduced into the ZnO films, which boosts the UV response of ZnO films and extends the photodetection to visible regions. The best UV photoresponse was detected on the 3D nanocave ZnO-Au hybrid films, attributing to the light trapping mechanism of 3D periodic structures and the driving force of the Schottky barrier at the ZnO/Au interface, while the high visible photoresponse of ZnO-Au hybrid films mainly results from the hot electron generation and injection process over the Schottky junctions mediated by Au surface plasmon resonances. The work provides a cost-effective pathway to develop large-scale periodic 3D nanopatterned thin film photodetectors and is promising for the future deployment of high performance optoelectronic devices.
机译:氧化锌半导体与周期3 d nanocave电影模式被热的纳米压印技术,是光明的光电探测器的增强的光收获能力。引入到氧化锌薄膜,提高了氧化锌薄膜的紫外响应和扩展了光电探测到可见的区域。3 d nanocave光敏反应被发现ZnO-Au混合电影,认为光被困的三维周期性结构和机制肖特基势垒的驱动力氧化锌/非盟接口,而高可见光响应主要ZnO-Au混合的电影从热电子发电和结果肖特基结注入过程由非盟表面等离子体共振。工作提供了一个有效的途径来培养大规模的周期3 d nanopatterned薄膜光电探测器和对未来的承诺部署高性能光电子设备。

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