作者: Yurui Fang , Yang Jiao , Kunli Xiong , Robin Ogier , Zhong-Jian Yang
DOI: 10.1021/ACS.NANOLETT.5B01070
关键词: Optoelectronics 、 Energy conversion efficiency 、 Materials science 、 Localized surface plasmon 、 Semiconductor 、 Nanophotonics 、 Plasmon 、 Photodetector 、 Surface plasmon 、 Band gap
摘要: Emission of photoexcited hot electrons from plasmonic metal nanostructures to semiconductors is key to a number of proposed nanophotonics technologies for solar harvesting, water …