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Journal of Physical Chemistry A | 2010

Toward designed singlet fission: electronic states and photophysics of 1,3-diphenylisobenzofuran.

Andrew F. Schwerin; Justin C. Johnson; Millicent B. Smith; Paiboon Sreearunothai; Duška B. Popović; Jiří Černý; Zdenek Havlas; Irina Paci; Akin Akdag; Matthew K. MacLeod; Xudong Chen; Donald E. David; Mark A. Ratner; John R. Miller; Arthur J. Nozik; Josef Michl

Single crystal molecular structure and solution photophysical properties are reported for 1,3-diphenylisobenzofuran (1), of interest as a model compound in studies of singlet fission. For the ground state of 1 and of its radical cation (1(+*)) and anion (1(-*)), we report the UV-visible absorption spectra, and for neutral 1, also the magnetic circular dichroism (MCD) and the decomposition of the absorption spectrum into purely polarized components, deduced from fluorescence polarization. These results were used to identify a series of singlet excited states. For the first excited singlet and triplet states of 1, the transient visible absorption spectra, S(1) --> S(x) and sensitized T(1) --> T(x), and single exponential lifetimes, tau(F) = approximately 5.3 ns and tau(T) = approximately 200 micros, are reported. The spectra and lifetimes of S(1) --> S(0) fluorescence and sensitized T(1) --> T(x) absorption of 1 were obtained in a series of solvents, as was the fluorescence quantum yield, Phi(F) = 0.95-0.99. No phosphorescence has been detected. The first triplet excitation energy of solid 1 (11,400 cm(-1)) was obtained by electron energy loss spectroscopy, in agreement with previously reported solution values. The fluorescence excitation spectrum suggests an onset of a nonradiative channel at approximately 37,000 cm(-1). Excitation energies and relative transition intensities are in agreement with those of ab initio (CC2) calculations after an empirical 3000 cm(-1) adjustment of the initial state energy to correct differentially for a better quality description of the initial relative to the terminal state of an absorption transition. The interpretation of the MCD spectrum used the semiempirical PPP method, whose results for the S(0) --> S(x) spectrum require no empirical adjustment and are otherwise nearly identical with the CC2 results in all respects including the detailed nature of the electronic excitation. The ground state geometry of 1 was also calculated by the MP2, B3LYP, and CAS methods. The calculations provided a prediction of changes of molecular geometry upon excitation or ionization and permitted an interpretation of the spectra in terms of molecular orbitals involved. Computations suggest that 1 can exist as two nearly isoenergetic conformers of C(2) or C(s) symmetry. Linear dichroism measurements in stretched polyethylene provide evidence for their existence and show that they orient to different degrees, permitting a separation of their spectra in the region of the purely polarized first absorption band. Their excitation energies are nearly identical, but the Franck-Condon envelopes of their first transition differ to a surprising degree.


Journal of the American Chemical Society | 2004

Metal cation-methyl interactions in CB11Me12(-) salts of Me3Ge+, Me3Sn+, and Me3Pb+.

Ilya Zharov; Tsu Chien Weng; Anita M. Orendt; Dewey H. Barich; James E. Penner-Hahn; David M. Grant; Zdenek Havlas; Josef Michl


Journal of Physical Chemistry A | 2002

Theoretical Studies of Metal Ion Selectivity.† 2. DFT Calculations of Complexation Energies of Selected Transition Metal Ions (Co2+, Ni2+, Cu2+, Zn2+, Cd2+, and Hg2+) in Metal-Binding Sites of Metalloproteins

Lubomír Rulíšek; Zdenek Havlas


Journal of Physical Chemistry B | 2003

Theoretical studies of metal ion selectivity. 3. A theoretical design of the most specific combinations of functional groups representing amino acid side chains for the selected metal ions (Co2+, Ni2+, Cu2+, Zn2+, Cd2+, and Hg2+)

Lubomír Rulíšek; Zdenek Havlas


Journal of the American Chemical Society | 2006

CB11Me11 boronium ylides: carba-closo-dodecaboranes with a naked boron vertex.

Ilya Zharov; Zdenek Havlas; Anita M. Orendt; Dewey H. Barich; David M. Grant; Matthew G. Fete; Josef Michl


Journal of the American Chemical Society | 1985

Does fluoroformic acid exist

Zdenek Havlas; Tomas Kovar; Rudolf Zahradník


Journal of the American Chemical Society | 1988

Evaluation of the rate constant for the SN2 reaction fluoromethane + hydride .fwdarw. methane + fluoride in the gas phase

Angela. Merkel; Zdenek Havlas; Rudolf Zahradník


ChemInform | 2006

Spin—Orbit Coupling

Zdenek Havlas; Mojmir Kyvala; Josef Michl


Journal of the American Chemical Society | 2007

Aromatic substitution with hypercloso C(BCH3)11: a new mechanism.

Kamesh Vyakaranam; Zdenek Havlas; Josef Michl


Journal of Physical Chemistry A | 2016

Excitation Localization/Delocalization Isomerism in a Strongly Coupled Covalent Dimer of 1,3-Diphenylisobenzofuran

Joel N. Schrauben; Akin Akdag; Jin Wen; Zdenek Havlas; Joseph L. Ryerson; Millie B. Smith; Josef Michl; Justin C. Johnson

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Josef Michl

University of Colorado Boulder

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Rudolf Zahradník

Academy of Sciences of the Czech Republic

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Justin C. Johnson

National Renewable Energy Laboratory

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Lubomír Rulíšek

Academy of Sciences of the Czech Republic

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Akin Akdag

Middle East Technical University

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Andrew F. Schwerin

University of Colorado Boulder

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