Literature DB >> 23528091

The nature of the intramolecular charge transfer state in peridinin.

Nicole L Wagner1, Jordan A Greco, Miriam M Enriquez, Harry A Frank, Robert R Birge.   

Abstract

Experimental and theoretical evidence is presented that supports the theory that the intramolecular charge transfer (ICT) state of peridinin is an evolved state formed via excited-state bond-order reversal and solvent reorganization in polar media. The ICT state evolves in <100 fs and is characterized by a large dipole moment (~35 D). The charge transfer character involves a shift of electron density within the polyene chain, and it does not involve participation of molecular orbitals localized in either of the β-rings. Charge is moved from the allenic side of the polyene into the furanic ring region and is accompanied by bond-order reversal in the central portion of the polyene chain. The electronic properties of the ICT state are generated via mixing of the "1(1)Bu(+)" ionic state and the lowest-lying "2(1)Ag(-)" covalent state. The resulting ICT state is primarily (1)Bu(+)-like in character and exhibits not only a large oscillator strength but an unusually large doubly excited character. In most solvents, two populations exist in equilibrium, one with a lowest-lying ICT ionic state and a second with a lowest-lying "2(1)Ag(-)" covalent state. The two populations are separated by a small barrier associated with solvent relaxation and cavity formation.
Copyright © 2013 Biophysical Society. Published by Elsevier Inc. All rights reserved.

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Year:  2013        PMID: 23528091      PMCID: PMC3602764          DOI: 10.1016/j.bpj.2013.01.045

Source DB:  PubMed          Journal:  Biophys J        ISSN: 0006-3495            Impact factor:   4.033


  34 in total

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8.  Spectroscopic investigation of peridinin analogues having different pi-electron conjugated chain lengths: exploring the nature of the intramolecular charge transfer state.

Authors:  Dariusz M Niedzwiedzki; Nirmalya Chatterjee; Miriam M Enriquez; Takayuki Kajikawa; Shinji Hasegawa; Shigeo Katsumura; Harry A Frank
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2.  Low-temperature time-resolved spectroscopic study of the major light-harvesting complex of Amphidinium carterae.

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6.  A spectroscopic and theoretical investigation of a free-base meso-trithienylcorrole.

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Review 7.  The unique photophysical properties of the Peridinin-Chlorophyll-α-Protein.

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8.  Ab Initio Geometry and Bright Excitation of Carotenoids: Quantum Monte Carlo and Many Body Green's Function Theory Calculations on Peridinin.

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  9 in total

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