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1

Tibor, Braun. A káprázatos c60 molekula: Válogatott fejezetek a fullerénkutatásból. Akadémiai Kiadó, 1996.

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2

M, O'Brien M. C., ed. The Jahn-Teller effect in c60 and other icosahedral complexes. Princeton University Press, 1997.

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3

Zhang, Peng. Synthesis, separation and identification of C60,C70 and higher fullerenes. National Library of Canada = Bibliothèque nationale du Canada, 1993.

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4

NATO Advanced Research Workshop on the Chemical Physics ofFullerenes 10 (and 5) Years Later (1995 Varenna, Italy). The chemical physics of fullerenes 10 (and 5) years later: The far-reaching impact of the discovery of C60. Kluwer Academic, 1996.

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5

CCAST (World Laboratory) Symposium/Workshop (1994 China Center of Advanced Science and Technology). High Tc superconductivity and the C60 family: Proceedings of the CCAST (World Laboratory) Symposium/Workshop held at China Center of Advanced Science and Technology (World Laboratory), Beijing, People's Republic of China, May 23-June 2 1994. Gordon and Breach Publishers, 1995.

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6

Kroto, Harold W., ed. C60: Buckminsterfullerene. Jenny Stanford Publishing, 2016. http://dx.doi.org/10.1201/b19748.

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7

China Persecution of Protestant Sect/C606. Human Rights Watch, 1994.

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8

Pressure Off China Targets Activists/C607. Human Rights Watch, 1994.

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9

Corporation, British Broadcasting, ed. French travel pack: C60 cassette. BBC, 1990.

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10

Corporation, British Broadcasting, ed. Spanish travel pack: C60 cassette. BBC, 1990.

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11

Corporation, British Broadcasting, ed. German travel pack: C60 cassette. BBC, 1990.

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12

Bales, George C. C60: Novel About a Diamond. Rivendell Book Factory, 2007.

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13

Andriotis, A. N., R. M. Sheetz, E. Richter, and M. Menon. Structural, electronic, magnetic, and transport properties of carbon-fullerene-based polymers. Edited by A. V. Narlikar and Y. Y. Fu. Oxford University Press, 2017. http://dx.doi.org/10.1093/oxfordhb/9780199533053.013.21.

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This article discusses the structural, electronic, magnetic, and transport properties of carbon-fullerene-based polymers. In particular, it examines the defect-induced ferromagnetism of the C60-based polymers and its analog in the case of non-traditional inorganic materials. It first reviews the computational methods currently used in the literature, highlighting the pros and cons of each one of them. It then considers the defects associated with the ferromagnetism of the C60-based polymers, namely carbon vacancies, the 2 + 2 cycloaddition bonds and impurity atoms, and their effect on the elec
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14

Koruga, Djuro, Stuart Hameroff, and James Withers. Fullerene C60: History, Physics, Nanobiology, Nanotechnology. Elsevier Science Pub Co, 1993.

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15

Djuro, Koruga, ed. Fullerene C60: History, physics, nanobiology, nanotechnology. North-Holland, 1993.

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16

Fragments Of Roman Poetry C60 Bcad 20. Oxford University Press, USA, 2009.

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17

Akers, Kelly Lynn. Vibrational characterization of C60 solid films using Raman spectroscopy. 1994.

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18

Kaambre, Tanel. Resonant Soft X-Ray Spectroscopic Studies of C60 & Related Materials. Uppsala Universitet, 2002.

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19

Hogberg, Hans. Low-Temperature Deposition of Epitaxial Transition Metal Carbide Films and Superlattices Using C60 As Carbon Source. Uppsala Universitet, 1999.

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20

Andreoni, W. The Chemical Physics of Fullerenes 10 Years Later: The Far-Reaching Impact Of The Discovery Of C60. Andreoni W, 2010.

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21

Andreoni, W. The Chemical Physics of Fullerenes 10 (and 5) Years Later: The Far-Reaching Impact of the Discovery of C60. Springer, 1996.

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22

Eland, John H. D., and Raimund Feifel. Core–core and core–valence double ionisation. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198788980.003.0008.

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Basic concepts of inner shell double ionisation phenomena are discussed and examples are presented. An empirical model to calculate single-site K-shell double ionisation energies is proposed and the enhanced chemical shifts in double L-shell ionisation are illustrated. Core–valence double ionisation spectra are shown to closely resemble photoelectron spectra from single ionisation in many cases. Core–valence double ionisation spectra of NH3, CO, CO2, OCS, CS2, CF4, Si(CH3)4, benzene, and C60 are presented with analysis. In the context of core ionisation it is customary to use the very economic
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