On the paper “Mechanism of thermal runaway as a cause of Fleischmann-Pons effect,” by N.E. Galushkin et al. Published in the Journal of Electroanalytical Chemistry, 870, pp. 114237–114246 (2020), ISSN 0022-0728
Author:
Publisher
Elsevier BV
Subject
Electrochemistry,General Chemical Engineering,Analytical Chemistry
Reference13 articles.
1. N.E. Galushkin, N.N. Yazvinskaya, D.N. Galushkin, “Mechanism of Thermal Runaway as a Cause of Fleischmann-Pons Effect,” Journal of Electroanalytical Chemistry, 870, pp. 114237 – 114246 (2020), ISSN 1572-6657.
2. M. Fleischmann, S. Pons and M. Hawkins, “Electrochemically induced Nuclear Fusion of Deuterium,” J. Electroanal. Chem., 261, pp. 301 – 308 (1989), ISSN 1572-6657.
3. J.R. Morrey, M.R. Caffee, H. Farrar, IV, N.J. Hoffman, G.B. Hudson, R.H. Jones, M.D. Kurz, J. Lupton, B.M. Oliver, B.V. Ruiz, J.F. Wacker and A. Van, “Measurements of Helium in Electrolyzed Palladium,” Fusion Technol., 18, 659 – 668 (1990), ISSN: 0748-1896.
4. H. Kozima, S. Watanabe, K. Hiroe, M. Nomura, M. Ohta and K. Kaki, “Analysis of Cold Fusion Experiments Generating Excess Heat, Tritium and Helium,” J. Electroanal. Chem., 425, pp. 173 – 178 (1997), ISSN 1572-6657.
5. N.J.C. Packham, K.L. Wolf, J.C. Wass R.C. Kainthla and J.O’M. Bockris, “Production of Tritium from D2O Electrolysis ant a Palladium Cathode,” J. Electroanal. Chem., 270, 451 – 458 (1989), ISSN 1572-6657.
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