纳米壳
材料科学
响应度
光电子学
光电探测器
全向天线
纳米光子学
吸收(声学)
球体
共振(粒子物理)
雷
光学
纳米技术
等离子体子
粒子物理学
复合材料
物理
天文
电信
计算机科学
天线(收音机)
作者
Der‐Hsien Lien,Zhenghong Dong,José Ramón Durán Retamal,Hsin‐Ping Wang,Tzu‐Chiao Wei,Dan Wang,Jr‐Hau He,Yi Cui
标识
DOI:10.1002/adma.201801972
摘要
Abstract Optical resonance formed inside a nanocavity resonator can trap light within the active region and hence enhance light absorption, effectively boosting device or material performance in applications of solar cells, photodetectors (PDs), and photocatalysts. Complementing conventional circular and spherical structures, a new type of multishelled spherical resonant strategy is presented. Due to the resonance‐enhanced absorption by multiple convex shells, ZnO nanoshell PDs show improved optoelectronic performance and omnidirectional detection of light at different incidence angles and polarization. In addition, the response and recovery speeds of these devices are improved (0.8 and 0.7 ms, respectively) up to three orders of magnitude faster than in previous reports because of the existence of junction barriers between the nanoshells. The general design principles behind these hollow ZnO nanoshells pave a new way to improve the performance of sophisticated nanophotonic devices.
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