Photoinduced electron transfer from conjugated polymers to CdSe nanocrystals

Citation
Ds. Ginger et Nc. Greenham, Photoinduced electron transfer from conjugated polymers to CdSe nanocrystals, PHYS REV B, 59(16), 1999, pp. 10622-10629
Citations number
33
Categorie Soggetti
Apllied Physucs/Condensed Matter/Materiales Science
Journal title
PHYSICAL REVIEW B-CONDENSED MATTER
ISSN journal
01631829 → ACNP
Volume
59
Issue
16
Year of publication
1999
Pages
10622 - 10629
Database
ISI
SICI code
0163-1829(19990415)59:16<10622:PETFCP>2.0.ZU;2-F
Abstract
We study photoinduced electron transfer from derivatives of poly(p-phenylen evinylene) (PPV) and nanocrystals of cadmium selenide via photoluminescence (PL) quenching and photoinduced absorption (PIA) spectroscopy. Using size- dependent quantum confinement to vary the energy levels of the nanocrystals accepters, and chemical substitution to vary the energy levels of the poly mer donors, we present a systematic investigation of charge transfer in the se polymer/quantum-dot composites. We observe efficient PL quenching in ble nds of poly[2-methoxy-5-(2'-ethyl-hexyloxy-p-phenylenlvinylene)] (MEH-PPV) with nearly monodisperse CdSe samples for nanocrystal diameters from 2.5 to 4.0 nm. The observed PIA peaks, as well as their frequency and temperature dependence, are consistent with the formation of long-lived positive polar ons on MEH-PPV following electron transfer to the nanocrystals. Both the PL quenching and the PIA features are insensitive to nanocrystal size. We hav e also studied blends of CdSe nanocrystals of 2.5-4.0 nm diameter with two high electron affinity cyano-substituted PPV derivatives. One of these poly mers behaves similarly to MEH-PPV: however in the other polymer, which has different alkoxy side chains, we find neither efficient PL quenching nor an y PLA features indicative of charge transfer. We explain the insensitivity of the electron transfer process to nanocrystal size in the context of the relevant polymer and nanocrystal energy levels and discuss the influence of the polymer side chains on the charge-transfer process. [S0163-1829(99)132 15-6].