We present a kinetic study of the reaction of ground state atomic caesium with N,O by direct spectroscopic monitoring in the time domain. CS(~~S,,~) was generated by the pulsed irradiation of caesium chloride vapour in the presence of N,O and excess helium in a static system and monitored by time-re
Kinetics of the photocatalytic water-splitting reaction on TiO2 and Pt/TiO2 studied by time-resolved infrared absorption spectroscopy
โ Scribed by Akira Yamakata; Taka-aki Ishibashi; Hiroshi Onishi
- Publisher
- Elsevier Science
- Year
- 2003
- Tongue
- English
- Weight
- 224 KB
- Volume
- 199
- Category
- Article
- ISSN
- 1381-1169
No coin nor oath required. For personal study only.
๐ SIMILAR VOLUMES
We present a kinetic study of the reaction Rb + N20 ---, Rb + N20 kNro by direct spectroscopic monitoring of ground state atomic rubidium in the time domain. Rb(52Sm/2) was generated by the pulsed irradiation of rubidium halide vapors at elevated temperatures in the presence of low concentrations of
We present a kinetic study of the reaction Rb 4-O2 + Nz ~ RbO2 + N2 by time-resolved atomic resonance absorption spectroscopy. Rb(52Si/2) was generated by the pulsed irradiation of Rbl and RbCI vapors in equilibrium with their solids at elevated temperatures in the presence of 02 and N2. The atom wa
A kinetic investigation is presented of the reactions of ground state atomic carbon, C(2p2(3pj)), with the molecules methyl chloride, methyl bromide, methyl iodide, methyl fluoride, dichloromethane, chloroform and carbon tetrachloride. Atomic carbon was generated by the repetitive pulsed irradiation
## Abstract We have synthesized ruthenium(II)โ and osmium(II)โpolypyridyl complexes ([M(bpy)~2~**L**]^2+^, in which M=Os^II^ or Ru^II^, bpy=2,2โฒโbipyridyl, and **L**=4โ(2,2โฒโbipyridinylโ4โyl)benzeneโ1,2โdiol) and studied the interfacial electronโtransfer process on a TiO~2~ nanoparticle surface usi