Decay kinetics of the ultraviolet and visible luminescences emitted by electron-irradiated crystalline H2O ice
- 1 September 1986
- journal article
- research article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 85 (5) , 2555-2568
- https://doi.org/10.1063/1.451063
Abstract
Electron pulse irradiated samples of high purity, crystalline H2O ice at 88 K showed three kinetically distinguishable regions of luminescence emission at 280–340 nm (band I); 320–600 nm (band II); and 450–600 nm (band III). Band II emission was assigned to the A 2∑+→X 2Π transition of OH, the gas phase peak being shifted from 306.4 to ∼385 nm by the ice lattice. The decay half‐life of the band II emission resulting from a single, ∼0.05 Mrad electron pulse, was 25±3 ns and increased steeply to 210±10 ns for the second pulse and then steadily decreased to 140±10 ns after 20 pulses. Band II emission from the second or later pulses was resolved into a short lived component with a decay half‐life of ∼30 ns and a longer lived component with a half‐life of ∼400 ns. The latter decay fitted a second order homogeneous rate equation in which the initial concentrations of the two reactants were in the ratio (2.6±0.1):1 and was attributed to the formation of excited OH by electron–ion recombination in the bulk ice. The short lived band II emission was also attributed to excited OH and probably arose from a mixture of a fast intraspur recombination reaction with some other process of different reaction order. Dose accumulation (memory) effects were attributed to the accumulation of OH radicals and lattice vacancies in the irradiatedice. The band III emission had a half‐life of 25±5 ns and its decay kinetics were consistent with emission from species such as excited OH− or H3O produced when electrons tunnel from a trapping site to a geminate partner.Keywords
This publication has 75 references indexed in Scilit:
- Energetics of fragmentation of CH5, H3O, and NH4 from neutralized ion-beam experimentsThe Journal of Chemical Physics, 1980
- A systematic study of the ionization potentials and electron, proton, hydrogen, and hydride affinities of OHn molecules and ionsJournal of the American Chemical Society, 1977
- Electron traps in irradiated crystalline iceThe Journal of Chemical Physics, 1976
- Radioluminescence of H2O and D2O iceThe Journal of Chemical Physics, 1975
- Nanosecond pulse radiolysis of aqueous solutions containing proton and hydroxyl radical scavengersProceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences, 1972
- Production of hydrogen, hydroxide, and hydrogen peroxide in the flash photolysis of iceThe Journal of Physical Chemistry, 1971
- Electronic excitation of OH and OD following collision of H2, HCOOH and D2O with metastable Ar (3 P 2,0) atomsTransactions of the Faraday Society, 1969
- Solvated Electron Spectrum in Irradiated IceNature, 1967
- Mass-Spectrometric and Theoretical Evidence for NH4 and H3OThe Journal of Chemical Physics, 1967
- Effects of γ-Radiation on Ice1Journal of the American Chemical Society, 1956