115号元素Mc

115号元素Mc

[1]^Staff (30 November 2016). "IUPAC Announces the Names of the Elements 113, 115, 117, and 118". IUPAC. Retrieved 1 December 2016..

[2]^St. Fleur, Nicholas (1 December 2016). "Four New Names Officially Added to the Periodic Table of Elements". New York Times. Retrieved 1 December 2016..

[3]^Oganessian, Y.T. (2015). "Super-heavy element research". Reports on Progress in Physics. 78 (3): 036301. doi:10.1088/0034-4885/78/3/036301..

[4]^Oganessian, Yu. Ts.; Utyonkoy, V. K.; Lobanov, Yu. V.; et al. (2004). "Experiments on the synthesis of element 115 in the reaction 243Am(48Ca,xn)291−x115". Physical Review C. 69 (2): 021601. Bibcode:2004PhRvC..69b1601O. doi:10.1103/PhysRevC.69.021601..

[5]^Oganessian; et al. (2003). "Experiments on the synthesis of element 115 in the reaction 243Am(48Ca,xn)291−x115" (PDF). JINR preprints..

[6]^Oganessian, Yu. Ts.; Utyonkov, V.; Dmitriev, S.; Lobanov, Yu.; Itkis, M.; Polyakov, A.; Tsyganov, Yu.; Mezentsev, A.; Yeremin, A.; Voinov, A. A.; et al. (2005). "Synthesis of elements 115 and 113 in the reaction 243Am + 48Ca". Physical Review C. 72 (3): 034611. Bibcode:2005PhRvC..72c4611O. doi:10.1103/PhysRevC.72.034611..

[7]^Barber, Robert C.; Karol, Paul J; Nakahara, Hiromichi; Vardaci, Emanuele; Vogt, Erich W. (2011). "Discovery of the elements with atomic numbers greater than or equal to 113 (IUPAC Technical Report)". Pure Appl. Chem. 83 (7): 1485. doi:10.1351/PAC-REP-10-05-01..

[8]^"Study of heavy and superheavy nuclei (see project 1.5)". Flerov Laboratory of Nuclear Reactions..

[9]^"FLNR Scientific Programme: Year 2017". flerovlab.jinr.ru. JINR. 2017. Retrieved 21 September 2017..

[10]^Nuclear Physics European Collaboration Committee (2017). "NuPECC Long Range Plan 2017 Perspectives in Nuclear Physics" (PDF). www.esf.org. European Science Foundation. Retrieved 9 January 2018. The new building is ready for installation of the DC-280 cyclotron, the commissioning and testing of the accelerator are ongoing, and the first experiments should begin in 2018. ... The synthesis of isotopes of element Z=115 in the 48Ca+243Am reactions was chosen as the first-day full-scale experiment. During this experiment, the performances of all the systems of the new accelerator and gas-filled separator (GFS-2) will be tested. ... To get access to superheavy nuclides with Z>118 and carry out a detailed study on their properties, a sufficient increase in the beam intensity and the development of separators that provide the necessary background suppression are needed. This is the main goal of the construction of a first-ever SHE Factory..

[11]^"Existence of new element confirmed". Lund University. 27 August 2013. Retrieved 10 April 2016..

[12]^"Spectroscopy of element 115 decay chains (Accepted for publication on Physical Review Letters on 9 August 2013)". Retrieved 2 September 2013..

[13]^Karol, Paul J.; Barber, Robert C.; Sherrill, Bradley M.; Vardaci, Emanuele; Yamazaki, Toshimitsu (22 December 2015). "Discovery of the elements with atomic numbers Z = 113, 115 and 117 (IUPAC Technical Report)" (PDF). Pure Appl. Chem. 88 (1–2): 139–153. doi:10.1515/pac-2015-0502. Retrieved 2 April 2016..

[14]^Gates, J. M; Gregorich, K. E; Gothe, O. R; Uribe, E. C; Pang, G. K; Bleuel, D. L; Block, M; Clark, R. M; Campbell, C. M; Crawford, H. L; Cromaz, M; Di Nitto, A; Düllmann, Ch. E; Esker, N. E; Fahlander, C; Fallon, P; Farjadi, R. M; Forsberg, U; Khuyagbaatar, J; Loveland, W; MacChiavelli, A. O; May, E. M; Mudder, P. R; Olive, D. T; Rice, A. C; Rissanen, J; Rudolph, D; Sarmiento, L. G; Shusterman, J. A; et al. (2015). "Decay spectroscopy of element 115 daughters: 280Rg→276Mt and 276Mt→Bh". Physical Review C. 92 (2). Bibcode:2015PhRvC..92b1301G. doi:10.1103/PhysRevC.92.021301..

[15]^Discovery and Assignment of Elements with Atomic Numbers 113, 115, 117 and 118. IUPAC (2015-12-30).

[16]^Forsberg, U.; Rudolph, D.; Fahlander, C.; Golubev, P.; Sarmiento, L. G.; Åberg, S.; Block, M.; Düllmann, Ch. E.; Heßberger, F. P.; Kratz, J. V.; Yakushev, A. (9 July 2016). "A new assessment of the alleged link between element 115 and element 117 decay chains" (PDF). Physics Letters B. 760 (2016): 293–6. Bibcode:2016PhLB..760..293F. doi:10.1016/j.physletb.2016.07.008. Retrieved 2 April 2016..

[17]^Forsberg, Ulrika; Fahlander, Claes; Rudolph, Dirk (2016). Congruence of decay chains of elements 113, 115, and 117 (PDF). Nobel Symposium NS160 – Chemistry and Physics of Heavy and Superheavy Elements. doi:10.1051/epjconf/201613102003..

[18]^Zlokazov, V. B.; Utyonkov, V. K. (8 June 2017). "Analysis of decay chains of superheavy nuclei produced in the 249Bk+48Ca and 243Am+48Ca reactions". Journal of Physics G: Nuclear and Particle Physics. 44 (75107): 075107. Bibcode:2017JPhG...44g5107Z. doi:10.1088/1361-6471/aa7293. Retrieved 9 January 2018..

[19]^Chatt, J. (1979). "Recommendations for the Naming of Elements of Atomic Numbers Greater than 100". Pure Appl. Chem. 51 (2): 381–384. doi:10.1351/pac197951020381..

[20]^"IUPAC - International Union of Pure and Applied Chemistry: Discovery and Assignment of Elements with Atomic Numbers 113, 115, 117 and 118"..

[21]^Koppenol, W. H. (2002). "Naming of new elements (IUPAC Recommendations 2002)" (PDF). Pure and Applied Chemistry. 74 (5): 787. doi:10.1351/pac200274050787..

[22]^"115-ый элемент Унунпентиум может появиться в таблице Менделеева". oane.ws (in Russian). 28 August 2013. Retrieved 23 September 2015. В свою очередь, российские физики предлагают свой вариант – ланжевений (Ln) в честь известного французского физика-теоретика прошлого столетия Ланжевена.CS1 maint: Unrecognized language (link).

[23]^Fedorova, Vera (30 March 2011). "Весенняя сессия Комитета полномочных представителей ОИЯИ". JINR (in Russian). Joint Institute for Nuclear Research. Retrieved 22 September 2015.CS1 maint: Unrecognized language (link).

[24]^Zavyalova, Victoria (25 August 2015). "Element 115, in Moscow's name". Russia & India Report. Retrieved 22 September 2015..

[25]^"IUPAC Is Naming The Four New Elements Nihonium, Moscovium, Tennessine, And Oganesson". IUPAC. 2016-06-08. Retrieved 2016-06-08..

[26]^Fedorova, Vera (3 March 2017). "At the inauguration ceremony of the new elements of the Periodic table of D.I. Mendeleev". jinr.ru. Joint Institute for Nuclear Research. Retrieved 4 February 2018..

[27]^Zagrebaev, Valeriy; Karpov, Alexander; Greiner, Walter (2013). "Future of superheavy element research: Which nuclei could be synthesized within the next few years?" (PDF). Journal of Physics: Conference Series. 420. IOP Science. pp. 1–15. Retrieved 20 August 2013..

[28]^Considine, Glenn D.; Kulik, Peter H. (2002). Van Nostrand's scientific encyclopedia (9th ed.). Wiley-Interscience. ISBN 978-0-471-33230-5. OCLC 223349096..

[29]^"JINR Annual Reports 2000–2006". JINR. Retrieved 2013-08-27..

[30]^Thayer, John S. (2010). "Relativistic Effects and the Chemistry of the Heavier Main Group Elements". Relativistic Methods for Chemists. Springer. pp. 63–67, 83. doi:10.1007/978-1-4020-9975-5_2. ISBN 978-1-4020-9974-8..

[31]^Faegri, K.; Saue, T. (2001). "Diatomic molecules between very heavy elements of group 13 and group 17: A study of relativistic effects on bonding". Journal of Chemical Physics. 115 (6): 2456. Bibcode:2001JChPh.115.2456F. doi:10.1063/1.1385366..

[32]^Zaitsevskii, A.; van Wüllen, C.; Rusakov, A.; Titov, A. (September 2007). "Relativistic DFT and ab initio calculations on the seventh-row superheavy elements: E113 - E114" (PDF). jinr.ru. Retrieved 17 February 2018..

[33]^Keller, O. L., Jr.; C. W. Nestor, Jr. (1974). "Predicted properties of the superheavy elements. III. Element 115, Eka-bismuth" (PDF). Journal of Physical Chemistry. 78 (19): 1945. doi:10.1021/j100612a015..

[34]^Santiago, Régis T.; Haiduke, Roberto L. A. (2018). "Relativistic effects on inversion barriers of pyramidal group 15 hydrides". International Journal of Quantum Chemistry: e25585. doi:10.1002/qua.25585..

[35]^Alvarez-Thon, Luis; Inostroza-Pino, Natalia (2018). "Spin–Orbit Effects on Magnetically Induced Current Densities in the M5- (M = N, P, As, Sb, Bi, Mc) Clusters". Journal of Computational Chemistry. 2018 (14): 862. doi:10.1002/jcc.25170..

[36]^Düllmann, Christoph E. (2012). "Superheavy elements at GSI: a broad research program with element 114 in the focus of physics and chemistry". Radiochimica Acta. 100 (2): 67–74. doi:10.1524/ract.2011.1842..

[37]^Eichler, Robert (2013). "First foot prints of chemistry on the shore of the Island of Superheavy Elements" (PDF). Journal of Physics: Conference Series. IOP Science. 420 (1): 012003. arXiv:1212.4292. Bibcode:2013JPhCS.420a2003E. doi:10.1088/1742-6596/420/1/012003. Retrieved 11 September 2014..

[38]^Moody, Ken. "Synthesis of Superheavy Elements". In Schädel, Matthias; Shaughnessy, Dawn. The Chemistry of Superheavy Elements (2nd ed.). Springer Science & Business Media. pp. 24–8. ISBN 9783642374661..

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