DocumentCode :
26610
Title :
Using the Surface Plasmon Resonance of Au Nanoparticles to Enhance Ultraviolet Response of ZnO Nanorods-Based Schottky-Barrier Photodetectors
Author :
Hwang, J.D. ; Wang, F.H. ; Kung, C.Y. ; Chan, M.C.
Author_Institution :
Dept. of Electrophys., Nat. Chiayi Univ., Chiayi, Taiwan
Volume :
14
Issue :
2
fYear :
2015
fDate :
Mar-15
Firstpage :
318
Lastpage :
321
Abstract :
Surface plasmon resonance mediated by Gold (Au) nanoparticles (NPs) was employed to enhance the ultraviolet (UV) response of ZnO nanorod (NR)-based Schottky-barrier photodetectors (SB-PDs). The defect-level emissions of ZnO NRs induce surface plasmon resonance in Au NPs and enhance the electromagnetic field near Au NPs, which excites a great deal of electrons from Au NPs crossing over the barrier height of Au NP/ZnO interface. This causes the band-to-band emission of ZnO (384 nm) is increased by a magnitude of three, and the deep-level emissions (450-700 nm) are drastically decreased as compared to ZnO NRs without coverings of Au NPs. Also, it drastically enhances the UV (340 nm)-to-visible (560 nm) rejection ratio from 115 to 443. The effect of surface plasmon resonance is verified by that the responsivity of SB-PD with the covering of Au NPs exhibits a greater increasing with applied reverse-bias voltage than that without Au NPs.
Keywords :
II-VI semiconductors; Schottky barriers; deep levels; defect states; gold; nanoelectronics; nanoparticles; nanorods; nanosensors; photodetectors; semiconductor-metal boundaries; surface plasmon resonance; ultraviolet detectors; wide band gap semiconductors; zinc compounds; Au-ZnO; UV-visible rejection ratio; band-band emission; barrier height; deep-level emissions; defect-level emissions; electromagnetic field; gold nanoparticles; nanorod-based Schottky-barrier photodetectors; reverse-bias voltage; surface plasmon resonance; ultraviolet response; Gold; Nanoparticles; Photodetectors; Plasmons; Schottky diodes; Surface treatment; Zinc oxide; Au nanoparticles; Schottky-barrier photodetectors; Surface plasmon resonance; ZnO nanorod; surface plasmon resonance;
fLanguage :
English
Journal_Title :
Nanotechnology, IEEE Transactions on
Publisher :
ieee
ISSN :
1536-125X
Type :
jour
DOI :
10.1109/TNANO.2015.2393877
Filename :
7014378
Link To Document :
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