Optically detected magnetic resonance study of the lowest excited triplet state of aromatic thioketones: Xanthione
Explore this paper's citation graph
- Type
- article
- Published
- 1978-08-15
- Cited by
- 32
- References
- 25
- OpenAlex
- https://openalex.org/W2069662012
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:97610591
Keywords
Phosphorescence, Chemistry, Intersystem crossing, Excited state, Triplet state
References
- Spin‐orbit coupling effects on the zero field splitting of (π, π*) triplet states of conjugated enones
- Phosphorescence transients induced by magnetic resonance fast passage
- Optically detected magnetic resonance and spectroscopic studies of the lowest excited triplet states of xanthone and related molecules in crystalline systems
- Triplet state quenching by ground state molecules of the same kind. Xanthione in solution
- Fluorescence from S2 single vibronic levels in thiophosgene vapor: Quantum yields and quenching effects
- Chemically induced electron spin polarization from photolysis with plane polarized light
- The nature of the red emission of aromatic thioketones
- Photodissociation of thiophosgene
- Picosecond absorption spectra of the second excited singlet state of a molecule in the condensed phase: Xanthione
- Assignment of the Lowest Triplet State of the Carbonyl Group
- Correlation of the zero field splittings with the phosphorescence rate constants and vibronic activity in the lowest triplet state of benzaldehydes by PMDR
- A spectroscopic study of fluorescence from the second excited singlet state of thiophosgene vapor
- Fluorescence from the second excited singlet of aromatic thioketones in solution
- S2 → S0 fluorescence in an aromatic thioketone, xanthione
- ESR of the Triplet State of Benzophenone
- 6500‐Å Transition of Thiobenzophenone
- Spectroscopic and photochemical properties of aromatic thioketones: xanthione
- Optically Detected Adiabatic Inversion in Phosphorescent Triplet States and the Measurement of Intramolecular Energy Transfer Processes
- PMDR studies of the radiative mechanism in 3ππ∗ aromatic carbonyls; vibronic band dependence of the radiative decay rates
- Microwave-optical double quantum studies of short-lived triplet systems
Cited by
- Optical detection of the triplet-state magnetic resonance (ODMR) of sulfur dioxide adsorbed on zeolite 4A
- Characterization of the two tryptophan residues of the lactose repressor from Escherichia coli by phosphorescence and optical detection of magnetic resonance.
- Optically detected magnetic resonance study of the phosphorescent states of thiouracils
- Heavy‐atom effects associated with methylmercury (II) binding to rabbit glyceraldehyde‐3‐phosphate dehydrogenase
- Efficiency of singlet oxygen production by thiocarbonyls
- Triplet state deactivation and photochemistry of aromatic thioketones in solution: xanthione
- Phosphorescent states of aromatic thioketones with large zero-field splittings investigated by optically detected magnetic resonance spectroscopy
- The spectroscopy of xanthione in xanthone: An example of spin–orbit coupling dominated zero‐field splitting
- ODMR and optical investigation of the lowest triplet state of thioxanthone
- Xanthone. I. optical detection of an extremely large sublevel splitting the lowest triplet state
- Emission and excitation spectra of the aromatic thioketone xanthione in a Shpolskii matrix
- The lowest triplet state of tetramethyl-1,3-cyclobutanedithione. I. Single-crystal polarized absorption spectrum
- An unusually large zero-field splitting in the molecule xanthione
- Time‐resolved spectroscopy of intramolecular energy transfer in a rigid spiran
- Determination of the principal spin axes orientations for the 1-methyl-2-thiouracil triplet state using low-field optically detected magnetic resonance (ODMR)
- The role of T1 self-quenching in photochemical decay of aromatic thiones
- Solvent effect on the non-radiative S2(ππ*) decay of xanthione
- Molecular luminescence cryothermometer
- Study ofl-tryptophan corepressor binding to mutatedE. coli tryptophan repressor proteins by optically detected triplet-state magnetic resonance
- The Photoreactivity of Thiocarbonyl Compounds
Related papers
- Spectroscopic studies on napththalene in the vapor phase. III. Phosphorescence and intersystem crossing yields of single vibronic levels
- Intersystem crossing, phosphorescence, and spin-orbit coupling. Two contrasting Cu(I)-TADF dimers investigated by milli- to micro-second phosphorescence, femto-second fluorescence, and theoretical calculations
- Emission spectra and phosphorescence lifetime of benzene solutions at 77°K, as a function of concentration and excitation wavelength
- Cyclization-Promoted Ultralong Low-Temperature Phosphorescence via Boosting Intersystem Crossing.
- Luminescence of 5-Phenyltetrazole and its Derivatives. Part II. Phosphorescence
- Synergistic Generation and Accumulation of Triplet Excitons for Efficient Ultralong Organic Phosphorescence.
- Synergistic Generation and Accumulation of Triplet Excitons for Efficient Ultralong Organic Phosphorescence
- Does Halogen Bonding Promote Intersystem Crossing and Phosphorescence in Benzaldehyde
- Does Halogen Bonding Promote Intersystem Crossing and Phosphorescence in Benzaldehyde? C
- Photoexcited spin triplet states in zinc phthalocyanine studied by transient EPR