8
1 Introduction General Information on Technetium
German KE, Krjuchkov SV, Belyaeva LI et al (1988) Ion association in tetraalkylammonium
pertechnetate solutions. J Radioanal Nucl Chem 121(2):515–521
German KE, Grushevschkaya LN, Kryutchkov SV et al (1993) Investigation of phase transitions
and other physico-chemical properties of pertechnetates and perrhenates of alkali and organic
cations. Radiochim Acta 63:221–224
Holden NE, Hoffman DC (2000) Spontaneous fission half-lives for ground-state nuclides (Technical
Report). Pure Appl Chem 72(8):1525–1562
Johnstone EV et al (2017) Technetium: the first radioelement on the periodic table. J Chem Edu.
94(3):320–326
Katakura J (2012) JENDL FP decay data file 2011 and fission yields data file 2011. JAEAData/Code 2011-025, Nuclear Data Center. https://wwwndc.jaea.go.jp/cgi-bin/FPYfig?lib=11&
mode=s&iso=sU238&typ=g1&ynuc=Tc-99&ysub=Show+Yield&yld=c&zlog=set&ylow=12&
xpar=a&eng=e1. Accessed 13 Apr 2018
Katakura J, Minato F, Ohgama K (2016) Revision of the JENDL FP fission yield data. In: EPJ web
of conferences, vol 111, p 08004
Keller C, Kanellakopulos B (1963) Darstellung und Untersuchung einiger Pertechnetate des Typs
Me I TcO 4 . Radiochim Acta 1:107–108
Kenna BT, Kuroda PK (1961) Isolation of natural occurring technetium. J Inorg Nucl Chem 23:142–
144
Kenna BT (1962) The search for technetium in nature. J Chem Educ 39(9):436–442
Kenna BT, Kuroda PK (1964) Technetium in nature. J Inorg Nucl Chem 26(4):493–499
Kern S (1877) On a new metal, Davyum. The London, Edinburgh, and Dublin Philos Mag J Sci
Series 5. 4(23):158–159
Kobayashi T et al (1998) Decay properties of 97m’gTc. Nucl Phys A 636:367–378
Koch CC, Love GR (1967) The electrical resistivity of technetium from 8.0° to 1700° K. J Less
Comm Met 12(1):29–35
Könnecke Th, Neck V, Fanghänel Th, Kim JI (1997) Activity coefficients and pitzer parameters in
the systems Na + /Cs + /Cl - /TcO 4
- or CIO 4
- /H 2 O at 25 0 C. J Solution Chem 26(6):561–577
Kuroda PK, Menos M (1961) Determination of trace quantities of fission products in nonirradiated
natural and depleted uranium salts. Nucl Sci Eng 10:70
Maiti M et al (2010) Separation of no-carrier-added 93,94,94m,95,96Tc from 7Li induced natural
Zr target by liquid–liquid extraction. Appl Radiat Isot 68:42–46
Mauttach J (1934) Zur Systematik der Isotopen. J Z Physik 91:361–371
Mayer MG, Moszkowski SA, Nordhem LW (1951) Nuclear shell structure and beta-decay I. Odd
a Nuclei. Rev Modern Phys 23(4):315–321
Meggers WF, Scribner BK (1950) Arc and spark spectra of technetium. J Res Natl Bur Stand
45(6):476–489
Mendeleev DI (1869) Osnovy Khimii [The Principles of Chemistry]. St. Petersburg
Mendeleev DI (1869) Sootnoshenie svoistv s atomnym vesom elementov (The correlation of
properties with the atomic weights of the elements). Zh Russ Fiz-Khim O-va 1:60–77
Mendelejeff D (1869) ˝
Uber die Beziehungen der Eigeschaften zu den Atomgewichten der Elemente
(On the relationship of the properties of the elements to their atomic weights). J Z Chem 12:405–
406
Merrill PW (1952) Technetium in the stars. Science 115(2992):479–489
Moseley HGJ (1913) The high-frequency spectra of the elements. Phil Mag 26(13):1024–1034
Moseley HGJ (1914) The high-frequency spectra of the elements. Part II Phil Mag 27:703–713
Murin AN, Nefedov VD, Ryukhin YA (1961) Technetium—element 43. Russ Chem Rev 30:107–
115
Noddack W, Tacke I, Berg O (1925) Die Ekamangane. Naturwissenschaften. 13:567–574
Nystrom A, Thoennessen M (2012) Discovery of yttrium, zirconium, niobium, technetium and
ruthenium isotopes. At Data Nucl Data Tables 98:95–119
Parker P, Kuroda PK (1958) The occurrence of molybdenum-99 in natural and in depleted uranium
salts and the spontaneous fission half-life of uranium-238. J Inorg Nucl Chem 5:153–158
1 Introduction General Information on Technetium
German KE, Krjuchkov SV, Belyaeva LI et al (1988) Ion association in tetraalkylammonium
pertechnetate solutions. J Radioanal Nucl Chem 121(2):515–521
German KE, Grushevschkaya LN, Kryutchkov SV et al (1993) Investigation of phase transitions
and other physico-chemical properties of pertechnetates and perrhenates of alkali and organic
cations. Radiochim Acta 63:221–224
Holden NE, Hoffman DC (2000) Spontaneous fission half-lives for ground-state nuclides (Technical
Report). Pure Appl Chem 72(8):1525–1562
Johnstone EV et al (2017) Technetium: the first radioelement on the periodic table. J Chem Edu.
94(3):320–326
Katakura J (2012) JENDL FP decay data file 2011 and fission yields data file 2011. JAEAData/Code 2011-025, Nuclear Data Center. https://wwwndc.jaea.go.jp/cgi-bin/FPYfig?lib=11&
mode=s&iso=sU238&typ=g1&ynuc=Tc-99&ysub=Show+Yield&yld=c&zlog=set&ylow=12&
xpar=a&eng=e1. Accessed 13 Apr 2018
Katakura J, Minato F, Ohgama K (2016) Revision of the JENDL FP fission yield data. In: EPJ web
of conferences, vol 111, p 08004
Keller C, Kanellakopulos B (1963) Darstellung und Untersuchung einiger Pertechnetate des Typs
Me I TcO 4 . Radiochim Acta 1:107–108
Kenna BT, Kuroda PK (1961) Isolation of natural occurring technetium. J Inorg Nucl Chem 23:142–
144
Kenna BT (1962) The search for technetium in nature. J Chem Educ 39(9):436–442
Kenna BT, Kuroda PK (1964) Technetium in nature. J Inorg Nucl Chem 26(4):493–499
Kern S (1877) On a new metal, Davyum. The London, Edinburgh, and Dublin Philos Mag J Sci
Series 5. 4(23):158–159
Kobayashi T et al (1998) Decay properties of 97m’gTc. Nucl Phys A 636:367–378
Koch CC, Love GR (1967) The electrical resistivity of technetium from 8.0° to 1700° K. J Less
Comm Met 12(1):29–35
Könnecke Th, Neck V, Fanghänel Th, Kim JI (1997) Activity coefficients and pitzer parameters in
the systems Na + /Cs + /Cl - /TcO 4
- or CIO 4
- /H 2 O at 25 0 C. J Solution Chem 26(6):561–577
Kuroda PK, Menos M (1961) Determination of trace quantities of fission products in nonirradiated
natural and depleted uranium salts. Nucl Sci Eng 10:70
Maiti M et al (2010) Separation of no-carrier-added 93,94,94m,95,96Tc from 7Li induced natural
Zr target by liquid–liquid extraction. Appl Radiat Isot 68:42–46
Mauttach J (1934) Zur Systematik der Isotopen. J Z Physik 91:361–371
Mayer MG, Moszkowski SA, Nordhem LW (1951) Nuclear shell structure and beta-decay I. Odd
a Nuclei. Rev Modern Phys 23(4):315–321
Meggers WF, Scribner BK (1950) Arc and spark spectra of technetium. J Res Natl Bur Stand
45(6):476–489
Mendeleev DI (1869) Osnovy Khimii [The Principles of Chemistry]. St. Petersburg
Mendeleev DI (1869) Sootnoshenie svoistv s atomnym vesom elementov (The correlation of
properties with the atomic weights of the elements). Zh Russ Fiz-Khim O-va 1:60–77
Mendelejeff D (1869) ˝
Uber die Beziehungen der Eigeschaften zu den Atomgewichten der Elemente
(On the relationship of the properties of the elements to their atomic weights). J Z Chem 12:405–
406
Merrill PW (1952) Technetium in the stars. Science 115(2992):479–489
Moseley HGJ (1913) The high-frequency spectra of the elements. Phil Mag 26(13):1024–1034
Moseley HGJ (1914) The high-frequency spectra of the elements. Part II Phil Mag 27:703–713
Murin AN, Nefedov VD, Ryukhin YA (1961) Technetium—element 43. Russ Chem Rev 30:107–
115
Noddack W, Tacke I, Berg O (1925) Die Ekamangane. Naturwissenschaften. 13:567–574
Nystrom A, Thoennessen M (2012) Discovery of yttrium, zirconium, niobium, technetium and
ruthenium isotopes. At Data Nucl Data Tables 98:95–119
Parker P, Kuroda PK (1958) The occurrence of molybdenum-99 in natural and in depleted uranium
salts and the spontaneous fission half-life of uranium-238. J Inorg Nucl Chem 5:153–158
