138
5 Metallic Technetium, Corrosion, Technetium Alloys …
Boyd GE (1959) Technetium and promethium. J Chem Edu 36(1):3–14
Boyd GE, Larson QV, Motta EE (1960) J Am Chem Soc 82:809–815
Bramman JI, Sharpe RM, Thom D, Yates G (1968) Metallic fission-product inclusions in irradiated
oxide fuels. J Nucl Mater 25:201–215
Brewer L, Lamoreaux RH (1980) Thermochemical properties, in molybdenum: physico-chemical
properties of its compounds and alloys. At Energy Rev, Spec Issue 7:1–191
Burton-Pye BP, Radivojevic I, McGregor D, Francesconi LC et al (2011), photoreduction of 99Tc
pertechnetate by nanometer-sized metal oxides: new strategies for formation and sequestration
of low-valent technetium. J Am Chem Soc 133:18802
Cartledge GH (1955) The pertechnetate ion as an inhibitor of corrosion. J Am Chem Soc 77:2658–
2659
Cartledge GH (1971) The electrochemical behavior of technetium and iron containing technetium.
J Electrochem Soc 118(11):1752–1757
Cartledge GH, Sympson RF (1957) The existence of a flade potential on iron inhibited by ions of
the XO 4
− type. J Phys Chem 61(7):973–980
Chatterjee S, Hall GB, Johnsonet I et al (2018) Surprising formation of quasi-stable Tc(VI) in high
ionic strength alkaline media. Inorg Chem Front 5:2081–2091
Chotkowski M, Czerwi´ nski A (2012) Electrochemical and spectroelectrochemical studies of
pertechnetate electroreduction in acidic media. Electrochim Acta 76:165–173
Chotkowski M, Czerwi´ nski A (2016) Stability of technetium in the moderate oxidation states in
acidic media. Annales UMCS Sectio AA LXXI(1): 141–149
Chotkowski M (2018) Redox interactions of technetium with neptunium in acid solutions. J
Radioanal Nucl Chem 317:527–533
Compton RG, Sanders GHW (1996) Electrode potentials. Oxford Scientific Publications
Darby JB Jr, Norton LJ, Downey JW (1963) A survey of the binary systems of technetium with
group VIII transition elements. J Less-Common Met 5:397–402
Denden I, Essehli R, Fattahi M (2013) Spectrophotometric study of the behaviour of pertechnetate in
trifluoromethanesulfonic acid: effect of alpha irradiation on the stability of Tc(VII). J Radioanal
Nucl Chem 296:149–155
de Zoubov, N, Pourbaix M (1966) Technetium Chapter IV, Section 11.2. In: Pourbaix M Atlas of
electrochemical equilibria in aqueous solutions, Pergamon Press, p 298
Engelmann MD, Metz LA, Delmore JE (2008) Electrodeposition of technetium on platinum for
thermal ionization mass spectrometry (TIMS). J Radioanal Nucl Chem 276(2):493–498
Ferrier M, Poineau F, Jarvinen GD et al (2013) Chemical and electrochemical behavior of metallic
technetium in acidic media. J Radioanal Nucl Chem 298:1809–1817
Garcia-Garcia R, Ortega-Zarzosa G, Rincón ME et al (2014) The hydrogen evolution reaction
on rhenium metallic electrodes: a selected review and new experimental evidence. Electrocatal
6(3):263–273
Garcia-Garcia R, Rivera JG, Antaño-Lopez R (2016) Impedance spectra of the cathodic hydrogen
evolution reaction on polycrystalline rhenium. Int J Hydrogen Energy 41:4660–4669
Garraway J, Wilson PD (1984) The technetium-catalysed oxidation of hydrazine by nitric acid. J
Less-Common Met 97:191–203
German KE, Obruchnikova YA, Tumanova DN et al (2011) Technetium catalytic effect and speciation in nitric acid solutions in presence of Np(V), Th(IV), Zr(IV) and reducing nitrogen derivatives.
In: German KE, Myasoedov BF, Kodina GE, Maruk AY, Troshkina ID (eds) Book of proceedings,
7th ISTR July 4-8, 2011. Russia, Moscow, pp 114–120
Ghalei M, Vandenborre J, Poineau F (2018) Speciation of technetium in carbonate media under
helium ions and γ radiation. Radiochim Acta 1–9. https://doi.org/10.1515/ract-2018-2939
Hoshi H, Wei Y-Z, Kumagai M (2007) Study on valence of Pu, Np and Tc in nitric acid after
electrolytic reduction. J Alloys Compd 444–445:663–667
Inazawa S, Nitta K, Okada K et al (2016) molten salt bath, deposit, and method of producing metal
deposit. US Patent 9 512 530 B2
5 Metallic Technetium, Corrosion, Technetium Alloys …
Boyd GE (1959) Technetium and promethium. J Chem Edu 36(1):3–14
Boyd GE, Larson QV, Motta EE (1960) J Am Chem Soc 82:809–815
Bramman JI, Sharpe RM, Thom D, Yates G (1968) Metallic fission-product inclusions in irradiated
oxide fuels. J Nucl Mater 25:201–215
Brewer L, Lamoreaux RH (1980) Thermochemical properties, in molybdenum: physico-chemical
properties of its compounds and alloys. At Energy Rev, Spec Issue 7:1–191
Burton-Pye BP, Radivojevic I, McGregor D, Francesconi LC et al (2011), photoreduction of 99Tc
pertechnetate by nanometer-sized metal oxides: new strategies for formation and sequestration
of low-valent technetium. J Am Chem Soc 133:18802
Cartledge GH (1955) The pertechnetate ion as an inhibitor of corrosion. J Am Chem Soc 77:2658–
2659
Cartledge GH (1971) The electrochemical behavior of technetium and iron containing technetium.
J Electrochem Soc 118(11):1752–1757
Cartledge GH, Sympson RF (1957) The existence of a flade potential on iron inhibited by ions of
the XO 4
− type. J Phys Chem 61(7):973–980
Chatterjee S, Hall GB, Johnsonet I et al (2018) Surprising formation of quasi-stable Tc(VI) in high
ionic strength alkaline media. Inorg Chem Front 5:2081–2091
Chotkowski M, Czerwi´ nski A (2012) Electrochemical and spectroelectrochemical studies of
pertechnetate electroreduction in acidic media. Electrochim Acta 76:165–173
Chotkowski M, Czerwi´ nski A (2016) Stability of technetium in the moderate oxidation states in
acidic media. Annales UMCS Sectio AA LXXI(1): 141–149
Chotkowski M (2018) Redox interactions of technetium with neptunium in acid solutions. J
Radioanal Nucl Chem 317:527–533
Compton RG, Sanders GHW (1996) Electrode potentials. Oxford Scientific Publications
Darby JB Jr, Norton LJ, Downey JW (1963) A survey of the binary systems of technetium with
group VIII transition elements. J Less-Common Met 5:397–402
Denden I, Essehli R, Fattahi M (2013) Spectrophotometric study of the behaviour of pertechnetate in
trifluoromethanesulfonic acid: effect of alpha irradiation on the stability of Tc(VII). J Radioanal
Nucl Chem 296:149–155
de Zoubov, N, Pourbaix M (1966) Technetium Chapter IV, Section 11.2. In: Pourbaix M Atlas of
electrochemical equilibria in aqueous solutions, Pergamon Press, p 298
Engelmann MD, Metz LA, Delmore JE (2008) Electrodeposition of technetium on platinum for
thermal ionization mass spectrometry (TIMS). J Radioanal Nucl Chem 276(2):493–498
Ferrier M, Poineau F, Jarvinen GD et al (2013) Chemical and electrochemical behavior of metallic
technetium in acidic media. J Radioanal Nucl Chem 298:1809–1817
Garcia-Garcia R, Ortega-Zarzosa G, Rincón ME et al (2014) The hydrogen evolution reaction
on rhenium metallic electrodes: a selected review and new experimental evidence. Electrocatal
6(3):263–273
Garcia-Garcia R, Rivera JG, Antaño-Lopez R (2016) Impedance spectra of the cathodic hydrogen
evolution reaction on polycrystalline rhenium. Int J Hydrogen Energy 41:4660–4669
Garraway J, Wilson PD (1984) The technetium-catalysed oxidation of hydrazine by nitric acid. J
Less-Common Met 97:191–203
German KE, Obruchnikova YA, Tumanova DN et al (2011) Technetium catalytic effect and speciation in nitric acid solutions in presence of Np(V), Th(IV), Zr(IV) and reducing nitrogen derivatives.
In: German KE, Myasoedov BF, Kodina GE, Maruk AY, Troshkina ID (eds) Book of proceedings,
7th ISTR July 4-8, 2011. Russia, Moscow, pp 114–120
Ghalei M, Vandenborre J, Poineau F (2018) Speciation of technetium in carbonate media under
helium ions and γ radiation. Radiochim Acta 1–9. https://doi.org/10.1515/ract-2018-2939
Hoshi H, Wei Y-Z, Kumagai M (2007) Study on valence of Pu, Np and Tc in nitric acid after
electrolytic reduction. J Alloys Compd 444–445:663–667
Inazawa S, Nitta K, Okada K et al (2016) molten salt bath, deposit, and method of producing metal
deposit. US Patent 9 512 530 B2
