| Literature DB >> 25475883 |
Cen Zhang1, Claire Elizabeth Marvinney, Hai Yang Xu, Wei Zhen Liu, Chun Liang Wang, Li Xia Zhang, Jian Nong Wang, Jian Gang Ma, Yi Chun Liu.
Abstract
Localized surface plasmon (LSP) enhanced waveguide-type ultraviolet light-emitting diodes (LEDs) were fabricated by sputtering Ag nanoparticles (Ag-NPs) onto ZnO/MgZnO core/shell nanorod array (CS-NRA)/p-GaN heterostructures. A ∼9-fold enhancement of ZnO ultraviolet electroluminescence (EL) was demonstrated by the Ag-NPs decorated LED compared with the device without Ag-NPs. Angle-dependent EL measurements, as well as finite-difference time-domain simulations of the EL intensity spatial distribution, confirmed the waveguide-type EL transmission mode along the NR's axial direction. The increased spontaneous emission rate observed in time-resolved spectroscopy suggested that the ZnO EL enhancement was attributed to LSP-exciton/polariton coupling. However, a direct coupling is very difficult to achieve between Ag-LSPs and electron-hole pairs in the active region due to their "remote" separation. Thereby, two possible models involving the dynamic process of interactions among excitons, photons, and LSPs, were established to understand the selective enhancement of ZnO EL.Entities:
Year: 2015 PMID: 25475883 DOI: 10.1039/c4nr04966g
Source DB: PubMed Journal: Nanoscale ISSN: 2040-3364 Impact factor: 7.790