Difference between revisions of "Curium"
Physchim62 (talk | contribs) (Created page with "{{Infobox element |name = curium |symbol = Cm |left = americium |right = berkelium |above = Gd |below = — |atomic-number = 96 |configuration = [Rn] 5f<su...") |
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|atomic-number = 96 | |atomic-number = 96 | ||
|configuration = [Rn] 5f<sup>8</sup> 7s<sup>2</sup> | |configuration = [Rn] 5f<sup>8</sup> 7s<sup>2</sup> | ||
− | |phys-ref = <ref name="Lumetta">{{citation | first1 = Gregg J. | last1 = Lumetta | first2 = Major C. | last2 = Thompson | first3 = Robert A. | last3 = Penneman | first4 = P. Gary | last4 = Eller | contribution = Curium | title = The Chemistry of the Actinide and Transactinide Elements | editor1-first = Lester R. | editor1-last = Morss | editor2-first = Norman M. | editor2-last = Edelstein | editor3-first = Jean | editor3-last = Fuger | edition = 3rd | year = 2006 | volume = 3 | publisher = Springer | location = Dordrecht, the Netherlands | chapter = 9 | pages = 1397–1443 | url = http://radchem.nevada.edu/classes/rdch710/files/curium.pdf | doi = 10.1007/1-4020-3598-5_9}}.</ref | + | |phys-ref = <ref name="Lumetta">{{citation | first1 = Gregg J. | last1 = Lumetta | first2 = Major C. | last2 = Thompson | first3 = Robert A. | last3 = Penneman | first4 = P. Gary | last4 = Eller | contribution = Curium | title = The Chemistry of the Actinide and Transactinide Elements | editor1-first = Lester R. | editor1-last = Morss | editor2-first = Norman M. | editor2-last = Edelstein | editor3-first = Jean | editor3-last = Fuger | edition = 3rd | year = 2006 | volume = 3 | publisher = Springer | location = Dordrecht, the Netherlands | chapter = 9 | pages = 1397–1443 | url = http://radchem.nevada.edu/classes/rdch710/files/curium.pdf | doi = 10.1007/1-4020-3598-5_9}}.</ref> |
|melting-point = 1345(50) °C (1618(50) K) | |melting-point = 1345(50) °C (1618(50) K) | ||
|boiling-point = 3110 °C (3383 K) | |boiling-point = 3110 °C (3383 K) |
Latest revision as of 04:55, 25 April 2011
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Curium (symbol: Cm) is a synthetic chemical element, a member of the actinoid series.
Curium was first prepared in 1944 in the University of Chicago Metallurgical Laboratory.[7][8] It was named after Pierre and Marie Curie, pioneers of the study of radioactivity, by analogy with gadolinium, its lanthanoid homologue, named after the Swedish chemist Johan Gadolin.
Notes and references
Notes
References
- ↑ 1.0 1.1 1.2 Lumetta, Gregg J.; Thompson, Major C.; Penneman, Robert A.; Eller, P. Gary Curium. In The Chemistry of the Actinide and Transactinide Elements, 3rd ed.; Morss, Lester R.; Edelstein, Norman M.; Fuger, Jean, Eds.; Springer: Dordrecht, the Netherlands, 2006; Vol. 3, Chapter 9, pp 1397–1443. doi:10.1007/1-4020-3598-5_9, <http://radchem.nevada.edu/classes/rdch710/files/curium.pdf>.
- ↑ Pauling, Linus The Nature of the Chemical Bond, 3rd ed.; Ithaca, NY, 1960. ISBN 0-8014-0333-2.
- ↑ Deissenberger, Rüdiger; Köhler, Stefan; Ames, Friedhelm; Eberhardt, Klaus; Erdmann, Nicole; Funk, Heike; Herrmann, Günter; Kluge, Heinz-Jürgen, et al. First Determination of the Ionization Potential of Americium and Curium. Angew. Chem., Int. Ed. Engl. 1995, 34 (7), 814–15. DOI: 10.1002/anie.199508141.
- ↑ Cordero, Beatriz; Gómez, Verónica; Platero-Prats, Ana E.; Revés, Marc; Echeverría, Jorge; Cremades, Eduard; Barragán, Flavia; Alvarez, Santiago Covalent radii revisited. Dalton Trans. 2008 (5), 2832–38. DOI: 10.1039/b801115j.
- ↑ Shannon, R. D. Revised effective ionic radii and systematic studies of interatomic distances in halids and chalcogenides. Acta Crystallogr. A 1976, 32 (5), 751–67. DOI: 10.1107/S0567739476001551.
- ↑ Oetting, F. L.; Rand, M. H.; Ackerman, R. J. The Chemical Thermodynamics of Actinide Elements and Compounds; IAEA: Vienna, 1976; Vol. 1. ISBN 9201490763.
- ↑ Seaborg, G. T.; James, R. A.; Ghiorso, A. In The Transuranium Elements; Seaborg, G. T.; Katz, J. J.; Manning, W. W., Eds.; Natl. Nucl. En. Ser., Div. IV; McGraw-Hill: New York, 1949; Vol. 14B, pp 1554–71.
- ↑ Ghiorso, A.; James, R. A.; Morgan, L. O.; Seaborg, G. T. Preparation of Transplutonium Isotopes by Neutron Irradiation. Phys. Rev. 1950, 78 (4), 472. DOI: 10.1103/PhysRev.78.472.
External links
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