Abstract:
The kinetics of tunnelling reactions of hydrogen isotopes in solid molecular nanoclusters immersed in superfluid helium and the changes in the environment of the atoms during the course of these reactions are reviewed. Results of pulsed electron spin resonance show that a very large fraction (50%–60%) of the stabilised atoms reside on the surfaces of the nanoclusters. The results of studies of the recombination and the exotic behaviour of hydrogen atoms in a solid molecular hydrogen matrix at ultralow temperatures (0.15–0.9 K) are also discussed.
Received: 29.05.2007
Bibliographic databases:
Document Type:
Article
Language: English
Original paper language: Russian
Citation:
V. V. Khmelenko, E. P. Bernard, S. А. Vasiliev, D. M. Lee, “Tunnelling chemical reactions of hydrogen isotopes in quantum solids”, Usp. Khim., 76:12 (2007), 1185–1201; Russian Chem. Reviews, 76:12 (2007), 1107–1121
Linking options:
https://www.mathnet.ru/eng/rcr318
https://doi.org/10.1070/RC2007v076n12ABEH003729
https://www.mathnet.ru/eng/rcr/v76/i12/p1185
This publication is cited in the following 14 articles:
C. K. Wetzel, D. M. Lee, S. Sheludiakov, J. Ahokas, S. Vasiliev, V. V. Khmelenko, J Low Temp Phys, 2025
S. Sheludiakov, C. K. Wetzel, D. M. Lee, V. V. Khmelenko, J. Järvinen, J. Ahokas, S. Vasiliev, J Low Temp Phys, 2024
Mutunga F.M., Olenyik K.M., Strom A.I., Anderson D.T., J. Chem. Phys., 154:1 (2021), 014302
McColgan P.T., Meraki A., Boltnev R.E., Lee D.M., Khmelenko V.V., J. Phys. Chem. A, 121:47 (2017), 9045–9057