首页> 外文期刊>ACS Omega >Au-Nanoplasmonics-Mediated Surface Plasmon-Enhanced GaN Nanostructured UV Photodetectors
【24h】

Au-Nanoplasmonics-Mediated Surface Plasmon-Enhanced GaN Nanostructured UV Photodetectors

机译:Au-纳米纳米型介导的表面等离子体增强GaN纳米结构UV光电探测器

获取原文
获取外文期刊封面目录资料

摘要

The nanoplasmonic impact of chemically synthesized Au nanoparticles (Au NPs) on the performance of GaN nanostructure-based ultraviolet (UV) photodetectors is analyzed. The devices with uniformly distributed Au NPs on GaN nanostructures (nanoislands and nanoflowers) prominently respond toward UV illumination (325 nm) in both self-powered as well as photoconductive modes of operation and have shown fast and stable time-correlated response with significant enhancement in the performance parameters. A comprehensive analysis of the device design, laser power, and bias-dependent responsivity and response time is presented. The fabricated Au NP/GaN nanoflower-based device yields the highest photoresponsivity of ~ 380 mA/W, detectivity of ~ 10~(10) jones, reduced noise equivalent power of ~ 5.5 × 10~(–13) W Hz~(–1/2), quantum efficiency of ~ 145%, and fast response/recovery time of ~40 ms. The report illustrates the mechanism where light interacts with the chemically synthesized nanoparticles guided by the surface plasmon to effectively enhance the device performance. It is observed that the Au NP-stimulated local surface plasmon resonance effect and reduced channel resistance contribute to the augmented performance of the devices. Further, the decoration of low-dimensional Au NPs on GaN nanostructures acts as a detection enhancer with a fast recovery time and paves the way toward the realization of energy-efficient optoelectronic device applications.
机译:分析了化学合成的Au纳米颗粒(Au nps)对GaN纳米结构的紫外(UV)光电探测器性能的纳米升压的影响。具有均匀分布的Au NPS在GaN纳米结构(Nanoislands和Nanoflowers上)突出地响应UV照明(325nm),并且在自动的操作和光电导模式中均衡,并显示出快速且稳定的时间相关响应,具有显着的增强性能参数。介绍了设备设计,激光功率和偏置响应性和响应时间的全面分析。制造的AU NP / GaN纳米灯的装置产生〜380 mA / W的最高光响应性,探测率〜10〜(10)琼,降低噪声等效功率〜5.5×10〜(-13)W Hz〜( - 1/2),量子效率为约145%,快速响应/恢复时间为约40毫秒。该报告说明了光与表面等离子体引导的化学合成纳米颗粒相互作用的机制,以有效地提高器件性能。观察到Au NP刺激的局部表面等离子体谐振效果和降低的信道电阻有助于设备的增强性能。此外,GaN纳米结构上的低维AU NP的装饰用作具有快速恢复时间的检测增强器,并铺平朝向实现节能光电器件应用的方式。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号