Issue 31, 2011

Coalescence of magic sized CdSe into rods and wires and subsequent energy transfer

Abstract

We report on the synthesis of CdSe magic-sized clusters (MSCs) and their evolution into 1D rod and wires retaining the diameter of the order of MSCs. At the beginning of the reaction, different classes of stable MSCs with band gaps of 3.02 eV and 2.57 eV are formed, which exhibit sharp band edge photoluminescence features with FWHM in the order of ∼13 nm. Reaction annealing time was carried out in order to monitor the shape evolution of the MSCs. We find that magic sized CdSe evolve into 1D rod and wires retaining the same diameter upon increasing annealing time. We observed the gradual emergence of new red shifted emission peaks during this shape evolution process, which emerge as a result of one dimensional energy transfer within the magic sized clusters during their subsequent transformation into rods and wires. The smallest, the second smallest sized MSC and the wires sequentially act as donors and acceptors during the size evolution from small MSCs to larger ones, and then eventually to wires. Steady-state and time-resolved luminescent spectroscopy revealed Forster resonance energy transfer (FRET) between the MSCs to the rods and wires.

Graphical abstract: Coalescence of magic sized CdSe into rods and wires and subsequent energy transfer

Article information

Article type
Paper
Submitted
08 Mar 2011
Accepted
31 May 2011
First published
05 Jul 2011

J. Mater. Chem., 2011,21, 11585-11591

Coalescence of magic sized CdSe into rods and wires and subsequent energy transfer

S. Sengupta, D. D. Sarma and S. Acharya, J. Mater. Chem., 2011, 21, 11585 DOI: 10.1039/C1JM11004G

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