Ultrafast Charge Transfer and Upconversion in Zinc β-Tetraaminophthalocyanine-Functionalized PbS Nanostructures Probed by Transient Absorption Spectroscopy

Journal Article (2017)
Author(s)

J.D. Lauth (TU Delft - ChemE/Opto-electronic Materials)

G. Grimaldi (TU Delft - ChemE/Opto-electronic Materials)

S.S. Kinge (Toyota Motor Europe, TU Delft - ChemE/Opto-electronic Materials)

AJ Houtepen (TU Delft - ChemE/Opto-electronic Materials)

L.D.A. Siebbeles (TU Delft - ChemE/Opto-electronic Materials)

M. Scheele (Eberhard Karls Universität Tübingen)

Research Group
ChemE/Opto-electronic Materials
DOI related publication
https://doi.org/10.1002/anie.201707443
More Info
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Publication Year
2017
Language
English
Research Group
ChemE/Opto-electronic Materials
Issue number
45
Volume number
56
Pages (from-to)
14061-14065

Abstract

We functionalize PbS nanocrystals with the organic semiconductor Zn β-tetraaminophthalocyanine to design a nanostructured solid-state material with frequent organic–inorganic interfaces. By transient absorption and fluorescence spectroscopy, we investigate the optoelectronic response of this hybrid material under near-infrared excitation to find efficient charge transfer from the nanocrystals to the molecules. We demonstrate that the material undergoes cooperative sensitization of two nanocrystals followed by photon upconversion and singlet emission of the organic semiconductor. The upconversion efficiency resembles that of comparable systems in solution, which we attribute to the large amount of interfaces present in this solid-state film. We anticipate that this synthetic strategy has great prospects for increasing the open-circuit voltage in PbS nanocrystal-based solar cells.

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