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. 2013 Jul 10;13(7):3225-31.
doi: 10.1021/nl401298s. Epub 2013 Jun 27.

Confined-but-connected quantum solids via controlled ligand displacement

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Confined-but-connected quantum solids via controlled ligand displacement

William J Baumgardner et al. Nano Lett. .

Abstract

Confined-but-connected quantum dot solids (QDS) combine the advantages of tunable, quantum-confined energy levels with efficient charge transport through enhanced electronic interdot coupling. We report the fabrication of QDS by treating self-assembled films of colloidal PbSe quantum dots with polar nonsolvents. Treatment with dimethylformamide balances the rates of self-assembly and ligand displacement to yield confined-but-connected QDS structures with cubic ordering and quasi-epitaxial interdot connections through facets of neighboring dots. The QDS structure was analyzed by a combination of transmission electron microscopy and wide-angle and small-angle X-ray scattering. Excitonic absorption signatures in optical spectroscopy confirm that quantum confinement is preserved. Transport measurements show significantly enhanced conductivity in treated films.

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