Time‐resolved resonance Raman spectrum of chrysene in theS1andT1states
Author:
Publisher
AIP Publishing
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.451258
Reference24 articles.
1. Kinetic analysis of time-resolved resonance Raman spectra. Time-dependent population of electronically excited 3Bu chrysene
2. Vibrational Raman scattering from excited triplet state chrysene by time‐resolved resonance Raman spectroscopy
3. Enhanced sensitivity of transient spontaneous Raman scattering in micellar solutions
4. Interpretation of resonance cars and shpolskii spectra with calculated molecular geometries, vibrational frequencies and relative intensities: Chrysene in it's lowest excited singlet and triplet state
5. Comparison of resonance cars spectra of chrysene in the lowest excited singlet and triplet state
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1. Development of real-time vibrational spectroscopy of molecules in electronic excited states: toward mapping molecular potential energy hypersurfaces;Journal of the Optical Society of America B;2011-04-12
2. Intramolecular Triplet Energy Transfer via Higher Triplet Excited State during Stepwise Two-Color Two-Laser Irradiation;The Journal of Physical Chemistry A;2007-09-07
3. Energy Levels of Oligothiophenes in the Higher Excited Triplet States;The Journal of Physical Chemistry C;2006-12-07
4. Rate Constant of Bimolecular Triplet Energy Transfer from Chrysene in the Higher Triplet Excited States;The Journal of Physical Chemistry A;2004-08-07
5. Quenching processes of aromatic hydrocarbons in the higher triplet excited states-energy transfer vs. electron transferElectronic supplementary information (ESI) available: The quenching of DBA(Tn) by CCl4, CHR(Tn) by NAP, the evidences of no DBA and CHR ions produced during two-color two-laser flash photolysis, and the evidence of formation of benzene/Cl complex. See http://www.rsc.org/suppdata/cp/b4/b400128a/;Physical Chemistry Chemical Physics;2004
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