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Synthesis of Ag/Mn Co-Doped CdS/ZnS (Core/Shell) Nanocrystals with Controlled Dopant Concentration and Spatial Distribution and the Dynamics of Excitons and Energy Transfer between Co-Dopants

Authors
Lee, WonseokOh, JuwonKwon, WoosungLee, Sang HyeonKim, DonghoKim, Sungjee
Issue Date
Jan-2019
Publisher
AMER CHEMICAL SOC
Keywords
Semiconductor nanocrystal; transition-metal doping; co-doping; energy transfer; time-resolved spectroscopy; exciton dynamics
Citation
NANO LETTERS, v.19, no.1, pp 308 - 317
Pages
10
Journal Title
NANO LETTERS
Volume
19
Number
1
Start Page
308
End Page
317
URI
https://scholarworks.sookmyung.ac.kr/handle/2020.sw.sookmyung/3864
DOI
10.1021/acs.nanolett.8b03923
ISSN
1530-6984
1530-6992
Abstract
We report lightly Ag/Mn co-doped CdS/ZnS (core/shell) nanocrystals (NCs) as a model system for studying interactions between co-dopants and between NCs and dopants. The co-doped NCs were prepared with a varying average number of Ag dopant atoms per CdS core of the NC from zero to eight; at the same time, the depth profile of the Mn dopants in the ZnS shells was controlled to be either close to or far from the Ag dopants. The incorporation of an average of one to two Ag dopant atoms per NC increased the band-edge photoluminescence (PL); however, it was quenched at higher doping concentration. This alternation is attributed to change of the Ag ion occupancy from PL-enhancing interstitial sites to PL-quenching substitutional sites. Mn PL increased as the number of Ag atoms per NC increased up to approximately seven and then decreased. For NCs doped only with Ag ions, the Ag dopants in substitutional sites acted as PL-quenching hole traps. In Ag/Mn co-doped NCs, the Ag dopants acted as Dexter-type relay sites that enhanced the energy transfer from NC to Mn ions; this effect increased as the distance between Ag and Mn dopants decreased. This model study demonstrates that the simultaneous control of dopant concentrations and spatial distributions in co-doped semiconductor NCs enables sophisticated control of their optical properties.
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