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Please use this identifier to cite or link to this item: http://purl.org/purl/3128

Title: Phenylethynylarene Based Donor-Acceptor Systems: Design, Synthesis and Photophysical Studies
Authors: Suneesh, C V
Dr. Gopidas, K R
Keywords: Donor-Acceptor
Photoinduced electron transfer
Photoinduced CS in Molecular system
D-A molecular dyads
D-A molecular dyads
Issue Date: 3-May-2010
Publisher: Cochin University of Science and Technology
Abstract: This thesis Entitled phenylethynylarene based Donor-Acceptor systems:Desigh,Synthesis and Photophysical studies. A strategy for the design of donor-acceptor dyads, wherein decay of the charge separated (CS) state to low lying local triplet levels could possibly be prevented, is proposed. In order to examine this strategy, a linked donor-acceptor dyad BPEPPT with bis(phenylethYlly/)pyrene (BPEP) as the light absorber and acceptor and phenothiazine (PT) as donor was designed and photoinduced electron transfer in the dyad investigated. Absorption spectra of the dyad can be obtained by adding contributions due 10 the BPEP and PT moieties indicating that the constituents do not interact in the ground stale. Fluorescence of the BPEP moiety was efficiently quenched by the PT donor and this was attributed to electron lransfer from PT to BPEP. Picosecond transient absorption studies suggested formation of a charge separated state directly from the singlet excited state of BPEP. Nanosecond flash photolysis experiments gave long-ived transient absorptions assignable to PT radical cation and BPEP radical anion. These assignments were confirmed by oxygen quenching studies and secondary electron transfer experiments. Based on the available data, energy level diagram for BPEP-PT was constructed. The long lifetime of the charge separated state was attributed to the inverted region effects. The CS state did not undergo decay to low lying BPEP triplet indicating the success of our strategy
Description: Photosciences and Pholonics Chemical Sciences and Technology Division
URI: http://dyuthi.cusat.ac.in/purl/3128
Appears in Collections:Faculty of Technology

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