Photoinduced energy transfer in ZnCdSeS quantum dot-phthalocyanines hybrids
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Mandal, Sadananda; García Iglesias, Miguel
Fecha
2018-08-31Derechos
© ACS under an ACS AuthorChoice License
Publicado en
ACS Omega, 2018, 3(8), 10048-10057
Editorial
American Chemical Society
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Palabras clave
Quantum dots
Energy transfer
Absorption
Phthalocyanine
Quenching
Resumen/Abstract
In this article, interaction between ZnCdSeS quantum dot (QD) and phthalocyanines with variable linker has been reported. Steady-state and time-resolved spectroscopic investigation reveals that only photoinduced energy transfer occurs from QD to phthalocyanines. To evaluate quantitatively the energy transfer, the Poisson statistics of QD-dye complex formation was used in the analysis of steady-state and time-resolved emission quenching, which allows to estimate the energy transfer rate constant for an ideal one-to-one complex. The measured rate constants are compared to the rates evaluated based on the classic Förster theory, which shows roughly 1 nm discrepancy in the energy transfer distance estimation, or one order in magnitude discrepancy in the transfer rate constants.
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