The collisional behaviour of ground state bismuth atoms, Bi(64S032, with alkyl bromides studied by time- resolved atomic resonance fluorescence at λ = 306.77 nm (Bi(74P32)) following pulsed irradiation: kinetics, radiation trapping and fluorescence quenching of Bi(74P12)
Author:
Publisher
Elsevier BV
Subject
General Physics and Astronomy,General Chemical Engineering,General Chemistry
Reference66 articles.
1. Kinetic studies of Bi(64S32) by time-resolved atomic resonance fluorescence I: Reactions with C2H2 (+He), N2O and fluorescence quenching of Bi(74P12)
2. Kinetic studies of Bi(64S32) by time-resolved atomic resonance fluorescence II: An investigation of the third-order reactions Bi + O2 + M and Bi + NO + M (M He, N2 and CF4)
3. Kinetic studies of reactions involving ground state Bi(64S) atoms by time-resolved resonance fluorescence
4. Kinetic studies of ground state atoms, Sb(54S), by time-resolved resonance fluorescence
5. Kinetic studies of ground state arsenic atoms, As(44S), by time-resolved resonance fluorescence
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1. Reactions of ground state atomic calcium, Ca[4s2()], investigated by time-resolved atomic resonance absorption spectroscopy at elevated temperature;Journal of Photochemistry and Photobiology A: Chemistry;2001-07
2. Measurements of the Rates of Reactions of Ground State Atomic Calcium, Ca[4s2(1S0)], with Alkyl Bromides at Elevated Temperature by Time-Resolved Atomic Resonance Absorption Spectroscopy [Ca(41P1 - 41S0); λ = 422.7 nm];Zeitschrift für Physikalische Chemie;2001-01-01
3. Time-resolved investigation of radiation trapping for the transition Sr[5s5p(3P1)] → Sr[5s2(1S0)] + hν (λ = 689.3 nm) following the generation of Sr[5s5p(3PJ)] by pulsed dye-laser excitation at elevated temperatures;Journal of Photochemistry and Photobiology A: Chemistry;1995-03
4. Reactive removal of bismuth monofluoride ground state;The Journal of Physical Chemistry;1991-02
5. Kinetic studies of the ground state lead atoms Pb(63P0) generated by pulsed irradiation and monitored by time-resolved fluorescence at λ = 405.78 nm (Pb(73P1) → Pb(63P2)) following optical excitation at λ = 283.31 nm (Pb(73P1) ← Pb(63P0));Journal of Photochemistry;1985-06
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