Oligophenylenevinylene (OPV)-based A-D-A chain chromophores were synthesized by symmetrically linking electron- or energy-acceptor units through an alkyl spacer. Phto-induced thru-space electron/energy-transfer (eT/ET) was investigated in the presence and absence of amylose encapsulation with respect to the spacer length (D-A distance) and acceptor strength. Fluorescence quenching of the D-A chromophores suggests that with the helical encapsulation, eT/ET have a discrete D-A distance dependence while the free chromophores have mixed contributions, some from eT but largely from self-quenching due to aggregation and/or solvent deactivation.
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Univ Puerto Rico Rio Piedras, Dept Chem, San Juan, PR 00926 USA
Univ Puerto Rico Rio Piedras, Mol Sci Res Ctr, San Juan, PR 00926 USAUniv Puerto Rico Rio Piedras, Dept Chem, San Juan, PR 00926 USA
Prieto-Costas, Luis A.
Rivera-Cordero, Genesis R.
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Univ Puerto Rico Rio Piedras, Dept Chem, San Juan, PR 00926 USA
Univ Puerto Rico Rio Piedras, Mol Sci Res Ctr, San Juan, PR 00926 USAUniv Puerto Rico Rio Piedras, Dept Chem, San Juan, PR 00926 USA
Rivera-Cordero, Genesis R.
Rivera, Jose M.
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Univ Puerto Rico Rio Piedras, Dept Chem, San Juan, PR 00926 USA
Univ Puerto Rico Rio Piedras, Mol Sci Res Ctr, San Juan, PR 00926 USAUniv Puerto Rico Rio Piedras, Dept Chem, San Juan, PR 00926 USA