Nash, Clinton S. (2005). „Atomic and Molecular Properties of Elements 112, 114, and 118”. J. Phys. Chem. A109 (15), 3493–3500. o. DOI:10.1021/jp050736o. PMID16833687.
Gillespie, R. J.; Robinson, E. A. (2007). „Gilbert N. Lewis and the chemical bond: the electron pair and the octet rule from 1916 to the present day”. J Comput Chem28 (1), 87–97. o. DOI:10.1002/jcc.20545. PMID17109437.
Grosse, A. V.; Kirschenbaum, A. D.; Streng, A. G.; Streng, L. V. (1963). „Krypton Tetrafluoride: Preparation and Some Properties”. Science139 (3559), 1047–1048. o. DOI:10.1126/science.139.3559.1047. PMID17812982.
Khriachtchev, Leonid; Pettersson, Mika; Runeberg, Nino; Lundell, Jan; Räsänen, Markku (2000). „A stable argon compound”. Nature406 (6798), 874–876. o. DOI:10.1038/35022551. PMID10972285.
Yu. Ts. Oganessian, V. Utyonkov, Yu. Lobanov, et al. (1999). „Synthesis of Superheavy Nuclei in the 48Ca + 244Pu Reaction”. Physical Review Letters83, 3154–3157. o, Kiadó: American Physical Society. DOI:10.1103/PhysRevLett.83.3154.
Mott, N. F. (1955). „John Edward Lennard-Jones. 1894–1954”. Biographical Memoirs of Fellows of the Royal Society1, 175–184. o. DOI:10.1098/rsbm.1955.0013.
A. G. M. Ferreira, L. Q. Lobo: On the vapour pressure of radon. In: The Journal of Chemical Thermodynamics. 2007, 39, 10, S. 1404–1406, doi:10.1016/j.jct.2007.03.017
Allen, Leland C. (1989). „Electronegativity is the average one-electron energy of the valence-shell electrons in ground-state free atoms”. Journal of the American Chemical Society111 (25), 9003–9014. o. DOI:10.1021/ja00207a003.
K. Schubert: Ein Modell für die Kristallstrukturen der chemischen Elemente. In: Acta Crystallographica. 1974, 30, S. 193–204, doi:10.1107/S0567740874002469.
A. V. Grosse: Some physical and chemical properties of element 118 (Eka-Em) and element 86 (Em). In: Journal of Inorganic and Nuclear Chemistry. 1965, 27, 3, S. 509–519, doi:10.1016/0022-1902(65)80255-X.
Ikeda, Tomoko (2000. november 23.). „Distortion of Host Lattice in Clathrate Hydrate as a Function of Guest Molecule and Temperature”. Journal of Physical Chemistry A104 (46), 10623–10630. o. DOI:10.1021/jp001313j.
M. Saunders, H. A. Jiménez-Vázquez, R. J. Cross, R. J. Poreda (1993). „Stable compounds of helium and neon. He@C60 and Ne@C60”. Science259 (5100), 1428–1430. o. DOI:10.1126/science.259.5100.1428. PMID17801275.
Martin Saunders, Hugo A. Jimenez-Vazquez, R. James Cross (1994). „Incorporation of helium, neon, argon, krypton, and xenon into fullerenes using high pressure”. J. Am. Chem. Soc.116 (5), 2193–2194. o. DOI:10.1021/ja00084a089.
Marko Zupan, Jernej Iskra, Stojan Stavber (1998). „Fluorination with XeF2. 44. Effect of Geometry and Heteroatom on the Regioselectivity of Fluorine Introduction into an Aromatic Ring”. J. Org. Chem63 (3), 878–880. o. DOI:10.1021/jo971496e. PMID11672087.
Avrorin, V. V.; Krasikova, R. N.; Nefedov, V. D.; Toropova, M. A. (1982). „The Chemistry of Radon”. Russian Chemical Review51 (1), 12–20. o. DOI:10.1070/RC1982v051n01ABEH002787.
Lehmann, J (2002). „The chemistry of krypton”. Coordination Chemistry Reviews233–234, 1–39. o. DOI:10.1016/S0010-8545(02)00202-3.
Fernandez, J.; Martin, F. (2007). „Photoionization of the HeH2+ molecular ion”. J. Phys. B: At. Mol. Opt. Phys40 (12), 2471–2480. o. DOI:10.1088/0953-4075/40/12/020.
Coc, A. (2004). „Updated Big Bang Nucleosynthesis confronted to WMAP observations and to the Abundance of Light Elements”. Astrophysical Journal600 (2), 544–552. o. DOI:10.1086/380121.
P. Morrison, J. Pine (1955). „Radiogenic Origin of the Helium Isotopes in Rock”. Annals of the New York Academy of Sciences62 (3), 71–92. o. DOI:10.1111/j.1749-6632.1955.tb35366.x.
Chrystèle Sanloup, C. Burkhard, Eva Maria Chamorro Schmidt, Albert Perez, et al. (2005). „Retention of Xenon in Quartz and Earth's Missing Xenon”. Science310 (5751), 1174–1177. o. DOI:10.1126/science.1119070. PMID16293758.
Sanders, Robert D.; Ma, Daqing; Maze, Mervyn (2005). „Xenon: elemental anaesthesia in clinical practice”. British Medical Bulletin71 (1), 115–135. o. DOI:10.1093/bmb/ldh034. PMID15728132.
Albert, M. S. (1998). „Development of hyperpolarized noble gas MRI”. Nuclear Instruments and Methods in Physics Research A402 (2–3), 441–453. o. DOI:10.1016/S0168-9002(97)00888-7. PMID11543065.
Nash, Clinton S. (2005). „Atomic and Molecular Properties of Elements 112, 114, and 118”. J. Phys. Chem. A109 (15), 3493–3500. o. DOI:10.1021/jp050736o. PMID16833687.
Gillespie, R. J.; Robinson, E. A. (2007). „Gilbert N. Lewis and the chemical bond: the electron pair and the octet rule from 1916 to the present day”. J Comput Chem28 (1), 87–97. o. DOI:10.1002/jcc.20545. PMID17109437.
Grosse, A. V.; Kirschenbaum, A. D.; Streng, A. G.; Streng, L. V. (1963). „Krypton Tetrafluoride: Preparation and Some Properties”. Science139 (3559), 1047–1048. o. DOI:10.1126/science.139.3559.1047. PMID17812982.
Khriachtchev, Leonid; Pettersson, Mika; Runeberg, Nino; Lundell, Jan; Räsänen, Markku (2000). „A stable argon compound”. Nature406 (6798), 874–876. o. DOI:10.1038/35022551. PMID10972285.
M. Saunders, H. A. Jiménez-Vázquez, R. J. Cross, R. J. Poreda (1993). „Stable compounds of helium and neon. He@C60 and Ne@C60”. Science259 (5100), 1428–1430. o. DOI:10.1126/science.259.5100.1428. PMID17801275.
Marko Zupan, Jernej Iskra, Stojan Stavber (1998). „Fluorination with XeF2. 44. Effect of Geometry and Heteroatom on the Regioselectivity of Fluorine Introduction into an Aromatic Ring”. J. Org. Chem63 (3), 878–880. o. DOI:10.1021/jo971496e. PMID11672087.
Chrystèle Sanloup, C. Burkhard, Eva Maria Chamorro Schmidt, Albert Perez, et al. (2005). „Retention of Xenon in Quartz and Earth's Missing Xenon”. Science310 (5751), 1174–1177. o. DOI:10.1126/science.1119070. PMID16293758.
Sanders, Robert D.; Ma, Daqing; Maze, Mervyn (2005). „Xenon: elemental anaesthesia in clinical practice”. British Medical Bulletin71 (1), 115–135. o. DOI:10.1093/bmb/ldh034. PMID15728132.
Albert, M. S. (1998). „Development of hyperpolarized noble gas MRI”. Nuclear Instruments and Methods in Physics Research A402 (2–3), 441–453. o. DOI:10.1016/S0168-9002(97)00888-7. PMID11543065.
Vann, R. D. (ed) (1989). „The Physiological Basis of Decompression”. 38th Undersea and Hyperbaric Medical Society Workshop75(Phys)6-1-89, 437. o. [2010. január 5-i dátummal az eredetiből archiválva]. (Hozzáférés: 2008. május 31.)
ualberta.ca
phys.ualberta.ca
Solid Helium. University of Alberta. [2008. február 12-i dátummal az eredetiből archiválva]. (Hozzáférés: 2008. június 22.)
Vann, R. D. (ed) (1989). „The Physiological Basis of Decompression”. 38th Undersea and Hyperbaric Medical Society Workshop75(Phys)6-1-89, 437. o. [2010. január 5-i dátummal az eredetiből archiválva]. (Hozzáférés: 2008. május 31.)
webelements.com
Winter, Mark: Helium: the essentials. University of Sheffield, 2008. (Hozzáférés: 2008. július 14.)