| Literature DB >> 28534407 |
Yunan Gao1, Mark C Weidman1, William A Tisdale1.
Abstract
Using liquid-liquid interfacial assembly, we control the deposition of CdSe nanoplatelets into face-down or edge-up configurations. Controlled assembly, combined with back focal plane imaging, enabled unambiguous determination of the transition dipole orientation. The transition dipole moment of the emissive band-edge exciton in CdSe nanoplatelets was found to be isotropically oriented within the plane of the nanoplatelet with no measurable out-of-plane component and no preference for the long- or short-axis of the nanoplatelet. Importantly, CdSe nanoplatelet films in the face-down configuration exhibited unity dipole orientation within the plane of the film, which could improve the external efficiency of nanoplatelet LEDs, lasers, photodetectors, and photovoltaic cells beyond that which is possible with isotropic emitters. We also show that the two self-assembled configurations have different Förster energy transfer rates, as a result of different dipole orientation and internanoplatelet distance.Entities:
Keywords: 2D materials; Self-assembly; back focal plane imaging; energy transfer; exciton
Mesh:
Substances:
Year: 2017 PMID: 28534407 DOI: 10.1021/acs.nanolett.7b01237
Source DB: PubMed Journal: Nano Lett ISSN: 1530-6984 Impact factor: 11.189