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A platinum acetylide polymer with sterically demanding substituents: effect of aggregation on the triplet excited state
Authors:Zhao Xiaoming  Cardolaccia Thomas  Farley Richard T  Abboud Khalil A  Schanze Kirk S
Institution:Department of Chemistry, University of Florida, P.O. Box 117200, Gainesville, Florida 32601-7200, USA.
Abstract:The effect of interchain interaction on the triplet excited state is explored in two Pt-acetylide polymers of the type -trans-Pt(PBu(3))(2)-C triple bond C-Ar-C triple bond C-](n), where Ar is either 1,4-phenylene or is based on the pentiptycene unit (polymers 2 and 3, respectively). To explore the effect of interchain interaction in Pt-acetylide materials, the optical properties of parent polymer 2 are compared with those of polymer 3 in which interchain interaction is precluded by the sterically bulky pentiptycene moiety. Insight into the effect of the pentiptycene unit on packing in the solid state comes from the X-ray structure of monomer 1b, Ph-C triple bond C-trans-Pt(PBu(3))(2)]-C triple bond C-Ar-C triple bond C-trans-Pt(PBu(3))(2)]-C triple bond C-Ph. Spectroscopic studies indicate that weak phosphorescence emission from an interchain aggregate is observed from parent polymer 2, both in solution and in the solid state. By contrast, the photophysics of 3 is dominated by the intrachain triplet exciton. Interestingly, the phosphorescence emission of polymer 3 in the solid state is nearly superimposable with that of a single crystal of monomer 1b, suggesting that the solid polymer experiences an environment that is similar to that of the monomer in the crystal.
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