Photophysical properties and electronic structure of retinylidene—chlorin—chalcones and analogues

被引:0
|
作者
Joseph W. Springer
Masahiko Taniguchi
Michael Krayer
Christian Ruzié
James R. Diers
Dariusz M. Niedzwiedzki
David F. Bocian
Jonathan S. Lindsey
Dewey Holten
机构
[1] Washington University,Department of Chemistry
[2] North Carolina State University,Department of Chemistry
[3] University of California,Department of Chemistry
[4] Washington University,Photosynthetic Antenna Research Center
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Synthetic chlorins can accommodate diverse substituents about the macrocycle perimeter. Simple auxochromes (e.g., vinyl, acetyl, phenyl) allow systematic tuning of spectral and photophysical features. More extensive spectral tailoring may be achieved by using more potent, highly conjugated substituents that themselves bring new absorption into a target spectral region, if deleterious excited-state quenching processes can be avoided. To explore such an expanded substituent space, herein the spectral and photophysical properties of four chlorin–chalcones are reported. The molecules are free base and zinc chlorins with substituents at the 13-position that include a chalcone and an extended chalcone derived by reaction of the 13-acetylchlorin with benzaldehyde and all-trans-retinal, respectively. Measurements of the spectral and photophysical properties (Φf, τs, kf, kic, kisc) are accompanied by density functional calculations that examine the characteristics of the frontier molecular orbitals. The chlorin–chalcones in nonpolar (toluene) and polar (dimethylsulfoxide) media exhibit bathochromically shifted (and intense) Qy absorption bands. The presence of the retinylidene group adds new absorption in the blue-green region where the chlorins are typically transparent; excitation in this region leads to quantitative formation of the chlorin Qy excited state. The spectral properties generally correlate with substituent effects on the frontier MOs. The four chlorin–chalcones in the solvent toluene have high fluorescence yields (0.24–0.30) and multi-nanosecond singlet excited-state lifetimes (3.7–8.4 ns), in addition to the added absorption imparted by the chalcone moiety. Collectively, the studies reported herein provide insight into the fundamental properties of chlorins and illustrate the utility of chalcones as a means of both tuning and augmenting the spectral properties of these chromophores.
引用
收藏
页码:634 / 650
页数:16
相关论文
共 50 条
  • [1] Photophysical properties and electronic structure of retinylidene-chlorin-chalcones and analogues
    Springer, Joseph W.
    Taniguchi, Masahiko
    Krayer, Michael
    Ruzie, Christian
    Diers, James R.
    Niedzwiedzki, Dariusz M.
    Bocian, David F.
    Lindsey, Jonathan S.
    Holten, Dewey
    PHOTOCHEMICAL & PHOTOBIOLOGICAL SCIENCES, 2014, 13 (04) : 634 - 650
  • [2] Conjugated-linker dependence of the photophysical properties and electronic structure of chlorin dyads
    Kang, Hyun Suk
    Satraitis, Andrius
    Meares, Adam
    Bhagavathy, Ganga Viswanathan
    Diers, James R.
    Niedzwiedzki, Dariusz M.
    Kirmaier, Christine
    Ptaszek, Marcin
    Bocian, David F.
    Holten, Dewey
    JOURNAL OF PORPHYRINS AND PHTHALOCYANINES, 2021, 25 (7-8) : 639 - 663
  • [3] Photophysical Properties and Electronic Structure of Chlorin-Imides: Bridging the Gap between Chlorins and Bacteriochlorins
    Faries, Kaitlm M.
    Diers, James R.
    Springer, Joseph W.
    Yang, Eunkyung
    Ptaszek, Marcin
    Lahaye, Dorothee
    Krayer, Michael
    Taniguchi, Masahiko
    Kirmaier, Christine
    Lindsey, Jonathan S.
    Bocian, David F.
    Holten, Dewey
    JOURNAL OF PHYSICAL CHEMISTRY B, 2015, 119 (24): : 7503 - 7515
  • [4] Photophysical Properties and Electronic Structure of Bacteriochlorin-Chalcones with Extended Near-Infrared Absorption
    Yang, Eunkyung
    Ruzie, Christian
    Krayer, Michael
    Diers, James R.
    Niedzwiedzki, Dariusz M.
    Kirmaier, Christine
    Lindsey, Jonathan S.
    Bocian, David F.
    Holten, Dewey
    PHOTOCHEMISTRY AND PHOTOBIOLOGY, 2013, 89 (03) : 586 - 604
  • [5] PHOTOPHYSICAL PROPERTIES OF A CHLORIN, A POTENT SENSITIZER FOR PHOTOCHEMOTHERAPY
    BRAULT, D
    VEVERBIZET, C
    ROUGEE, M
    BENSASSON, R
    PHOTOCHEMISTRY AND PHOTOBIOLOGY, 1988, 47 (01) : 151 - 154
  • [6] ELECTRONIC-STRUCTURE AND PHOTOPHYSICAL PROPERTIES OF POLYIMIDES
    LAFEMINA, JP
    KAFAFI, SA
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 1992, 203 : 601 - POLY
  • [7] Theoretical study on the electronic structures and photophysical properties of carbon nanorings and their analogues
    Xu Ying-Ying
    Kan Yu-He
    Wu Jie
    Tao Wei
    Su Zhong-Min
    ACTA PHYSICA SINICA, 2013, 62 (08)
  • [8] Opsin Effect on the Electronic Structure of the Retinylidene Chromophore in Rhodopsin
    Sproviero, Eduardo M.
    JOURNAL OF CHEMICAL THEORY AND COMPUTATION, 2015, 11 (03) : 1206 - 1219
  • [9] PHOTOPHYSICAL PROPERTIES OF PORPHYRIN CHLORIN SYSTEMS IN THE PRESENCE OF SURFACTANTS
    CUBEDDU, R
    KEIR, WF
    RAMPONI, R
    TRUSCOTT, TG
    PHOTOCHEMISTRY AND PHOTOBIOLOGY, 1987, 46 (05) : 633 - 638
  • [10] π-stacked poly(dibenzofulvene):: Structure and photophysical/electronic properties
    Nakano, T
    Yade, T
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2004, 227 : U448 - U448