Observation of efficient Förster energy transfer at 1.5 μm through temperature-tuning of monodisperse quantum dot solids

We present time-resolved cryogenic observations of Forster energy transfer in large, monodisperse lead sulphide quantum dots with ground state transitions near 1.5 mum (0.8 eV), in environments from 160 K to room temperature.

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Hauptverfasser: Bose, R., Mcmillan, J., Gao, J., Rickey, K., Chen, C., Talapin, D.V., Murray, C.B., Wong, C.W.
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container_start_page 759
container_title
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creator Bose, R.
Mcmillan, J.
Gao, J.
Rickey, K.
Chen, C.
Talapin, D.V.
Murray, C.B.
Wong, C.W.
description We present time-resolved cryogenic observations of Forster energy transfer in large, monodisperse lead sulphide quantum dots with ground state transitions near 1.5 mum (0.8 eV), in environments from 160 K to room temperature.
doi_str_mv 10.1109/LEOS.2008.4688842
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source IEEE Electronic Library (IEL) Conference Proceedings
subjects Absorption
Assembly
Chemistry
Energy exchange
Laser excitation
Power engineering and energy
Pump lasers
Quantum dots
Solids
Temperature
title Observation of efficient Förster energy transfer at 1.5 μm through temperature-tuning of monodisperse quantum dot solids
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