Nano-engineered electron-hole exchange interaction controls exciton dynamics in core-shell semiconductor nanocrystals

被引:236
作者
Brovelli, S. [1 ]
Schaller, R. D. [1 ,2 ]
Crooker, S. A. [3 ]
Garcia-Santamaria, F. [1 ]
Chen, Y. [1 ]
Viswanatha, R. [1 ]
Hollingsworth, J. A. [1 ,4 ]
Htoon, H. [1 ,2 ,4 ]
Klimov, V. I. [1 ,2 ]
机构
[1] Los Alamos Natl Lab, Div Chem, Los Alamos, NM 87545 USA
[2] Los Alamos Natl Lab, Ctr Adv Solar Photophys, Los Alamos, NM 87545 USA
[3] Los Alamos Natl Lab, Natl High Magnet Field Lab, Los Alamos, NM 87545 USA
[4] Los Alamos Natl Lab, Ctr Integrated Nanotechnol, Los Alamos, NM 87545 USA
来源
NATURE COMMUNICATIONS | 2011年 / 2卷
关键词
INVERTED CORE/SHELL NANOCRYSTALS; QUANTUM DOTS; DIELECTRIC CONFINEMENT; AUGER RECOMBINATION; DARK-EXCITON; LUMINESCENCE; SUPPRESSION; ENERGY;
D O I
10.1038/ncomms1281
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
A strong electron-hole exchange interaction (EI) in semiconductor nanocrystals (NCs) gives rise to a large (up to tens of meV) splitting between optically active ('bright') and optically passive ('dark') excitons. This dark-bright splitting has a significant effect on the optical properties of band-edge excitons and leads to a pronounced temperature and magnetic field dependence of radiative decay. Here we demonstrate a nanoengineering-based approach that provides control over EI while maintaining nearly constant emission energy. We show that the dark-bright splitting can be widely tuned by controlling the electron-hole spatial overlap in core-shell CdSe/CdS NCs with a variable shell width. In thick-shell samples, the EI energy reduces to <250 mu eV, which yields a material that emits with a nearly constant rate over temperatures from 1.5 to 300 K and magnetic fields up to 7 T. The EI-manipulation strategies demonstrated here are general and can be applied to other nanostructures with variable electron-hole overlap.
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页数:8
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