22
Views
37
CrossRef citations to date
0
Altmetric
Original Articles

Doubly Bonded C60 Dimers and Congeners: Computational Studies of Structures, Bond Energies and Transformations

Pages 565-585 | Published online: 27 Feb 2008

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (3)

E.G. Gal'pern, I.V. Stankevich, A.L. Chistyakov & L.A. Chernozatonskii. (1998) Energy-Band Structure Features of Some Crimped-Shape Nanotubes. Fullerene Science and Technology 6:3, pages 499-509.
Read now
Hiroshi Ueno, Shuichi [Obar]sawa, Eiji [Obar]sawa & Kazuo Takeuchi. (1998) Stone-Wales Rearrangement Pathways from the Hinge-Opened [2+2] C60 Dimer to Ipr C120 Fullerenes. Vibrational Analysis of Intermediates. Fullerene Science and Technology 6:2, pages 319-338.
Read now
Kazuhiko Honda, Eiji [Obar]sawa, Zdenek Slanina & Takatoshi Matsumoto. (1996) Thermal Transformation of Ring-Opened [2+2] C60 Dimer into a Wide-Bridged C120 Isomer. A Computational Evaluation of Fulvalene-Naphthalene Rearrangements. Fullerene Science and Technology 4:5, pages 819-834.
Read now

Articles from other publishers (34)

Jorge Laranjeira, Karol Strutyński, Leonel Marques, Emilio Martínez-Núñez & Manuel Melle-Franco. (2023) C60+C60 molecular bonding revisited and expanded. Carbon 213, pages 118209.
Crossref
Denis Sh. Sabirov, Ottorino Ori, Alina A. Tukhbatullina & Igor S. Shepelevich. (2021) Covalently Bonded Fullerene Nano-Aggregates (C60)n: Digitalizing Their Energy–Topology–Symmetry. Symmetry 13:10, pages 1899.
Crossref
Nooramalina Diana, Yasuhiro Yamada, Syun Gohda, Hironobu Ono, Shingo Kubo & Satoshi Sato. (2020) Carbon materials with high pentagon density. Journal of Materials Science 56:4, pages 2912-2943.
Crossref
Shintaro Fujii, Masato Koike, Tomoaki Nishino, Yoshiaki Shoji, Takanori Suzuki, Takanori Fukushima & Manabu Kiguchi. (2019) Electric-Field-Controllable Conductance Switching of an Overcrowded Ethylene Self-Assembled Monolayer. Journal of the American Chemical Society 141:46, pages 18544-18550.
Crossref
Debojit Bhattacharya, Douglas J. Klein & Yenni Ortiz. (2016) The astounding buckyball buckyball. Chemical Physics Letters 647, pages 185-188.
Crossref
Marcin A. Majewski, Tadeusz Lis, Joanna Cybińska & Marcin Stępień. (2015) Chrysaorenes: assembling coronoid hydrocarbons via the fold-in synthesis. Chemical Communications 51:82, pages 15094-15097.
Crossref
Nikolay O. Mchedlov-Petrossyan. (2013) Fullerenes in Liquid Media: An Unsettling Intrusion into the Solution Chemistry. Chemical Reviews 113:7, pages 5149-5193.
Crossref
Nikolay O. Mchedlov-Petrossyan. (2011) Fullerenes in molecular liquids. Solutions in “good” solvents: Another view. Journal of Molecular Liquids 161:1, pages 1-12.
Crossref
Feng-Ling Liu & Chen-Hui Wang. (2007) C114: Two intact C60 cages share the same hexagon. Journal of Molecular Structure: THEOCHEM 819:1-3, pages 130-135.
Crossref
Feng-Ling Liu & Xiao-Xia Zhao. (2007) Two intact C60 cages linked by six carbon–carbon single bonds. Journal of Molecular Structure: THEOCHEM 804:1-3, pages 117-121.
Crossref
V.D. Blank, S.G. Buga, G.A. Dubitsky, K.V. Gogolinsky, V.M. Prokhorov, N.R. Serebryanaya & V.A. Popov. 2007. Molecular Building Blocks for Nanotechnology. Molecular Building Blocks for Nanotechnology 393 418 .
Masaki Ozawa & Eiji Ōsawa. 2006. Carbon Nanotechnology. Carbon Nanotechnology 127 151 .
E. E. Mikheeva, L. A. Chernozatonskii & T. Yu. Astahova. 2005. Hydrogen Materials Science and Chemistry of Carbon Nanomaterials. Hydrogen Materials Science and Chemistry of Carbon Nanomaterials 279 282 .
S Buga, V Blank, Å Fransson, N Serebryanaya & B Sundqvist. (2002) DSC study of annealing and phase transformations of C60 and C70 polymerized under pressures in the range 9.5–13 GPa. Journal of Physics and Chemistry of Solids 63:2, pages 331-343.
Crossref
V. Blank, S. Buga, G. Dubitsky, N. Serebryanaya, M. Popov & V. Prokhorov. 2002. Perspectives of Fullerene Nanotechnology. Perspectives of Fullerene Nanotechnology 223 233 .
Jun Onoe, Tomonobu Nakayama, Aiko Nakao, Yuichi Hashi, Keivan Esfarjani, Kaoru Ohno, Yoshiyuki Kawazoe, Masakazu Aono & Kazuo Takeuchi. 2002. Clusters and Nanomaterials. Clusters and Nanomaterials 135 169 .
V. Blank, S. Buga, G. Dubitsky, N. Serebryanaya, M. Popov & V. Prokhorov. 2002. Perspectives of Fullerene Nanotechnology. Perspectives of Fullerene Nanotechnology 223 233 .
N.R Serebryanaya, V.D Blank, V.A Ivdenko & L.A Chernozatonskii. (2001) Pressure-induced superhard phase of C60. Solid State Communications 118:4, pages 183-187.
Crossref
N.R. Serebryanaya & L.A. Chernozatonskii. (2000) Modelling and interpretation of the experimental data on the 3D polymerized C60 fullerites. Solid State Communications 114:10, pages 537-541.
Crossref
L.A Chernozatonskii, N.R Serebryanaya & B.N Mavrin. (2000) The superhard crystalline three-dimensional polymerized C60 phase. Chemical Physics Letters 316:3-4, pages 199-204.
Crossref
Alexandre A. Shvartsburg, Robert R. Hudgins, Rafael Gutierrez, Gerd Jungnickel, Thomas Frauenheim, Koblar A. Jackson & Martin F. Jarrold. (1999) Ball-and-Chain Dimers from a Hot Fullerene Plasma. The Journal of Physical Chemistry A 103:27, pages 5275-5284.
Crossref
S. P. Solodovnikov, E. G. Gal'pern, I. V. Stankevich & A. L. Chistyakov. (1999) ESR spectra and electronic structure of the C120 ·+ radical cation and the paramagnetic C120O2+ dication and C120O2− dianion. Russian Chemical Bulletin 48:7, pages 1246-1249.
Crossref
E. G. Gal'pern, I. V. Stankevich, A. L. Chistyakov & L. A. Chernozatonskii. (1999) Molecular and electronic structure of several heterofullerene BNC58 and B2N2C56 oligomers and [B2N2C56] n macromolecule. Russian Chemical Bulletin 48:3, pages 428-432.
Crossref
Franco Cataldo. (1999) On C60 fullerene photopolymerization. Polymer International 48:2, pages 143-149.
Crossref
Koichi Komatsu, Guan-Wu Wang, Yasujiro Murata, Toru Tanaka, Koichi Fujiwara, Kazunori Yamamoto & Martin Saunders. (1998) Mechanochemical Synthesis and Characterization of the Fullerene Dimer C 120 . The Journal of Organic Chemistry 63:25, pages 9358-9366.
Crossref
Alexandre A. Shvartsburg, Lisa A. Pederson, Robert R. Hudgins, George C. Schatz & Martin F. Jarrold. (1998) Structures of the Clusters Produced by Laser Desorption of Fullerenes:  [2+2] Cycloadducts of Preshrunk Cages. The Journal of Physical Chemistry A 102:41, pages 7919-7923.
Crossref
L. A. Chernozatonskii, E. G. Gal’pern & I. V. Stankevich. (1998) Polymers from C60 barrelenes. Journal of Experimental and Theoretical Physics Letters 67:9, pages 712-719.
Crossref
E. G. Gal'pern, I. V. Stankevich, A. L. Chistyakov & L. A. Chernozatonskii. (1998) Molecular and electronic structures of some trimers of polyhedral carbon clusters. Russian Chemical Bulletin 47:1, pages 1-7.
Crossref
Jun Onoe, Aiko Nakao & Kazuo Takeuchi. (1997) XPS study of a photopolymerized film . Physical Review B 55:15, pages 10051-10056.
Crossref
E.G. Gal'pern, I.V. Stankevich, A.L. Chistyakov & L.A. Chernozatonskii. (1997) Models of the stable dumbbell-like C120 cluster and crimped nanotubes constructed from C60 fullerenes. Chemical Physics Letters 269:1-2, pages 85-87.
Crossref
Shuichi Ōsawa, Mitsuharu Sakai & Eiji Ōsawa. (1997) Nature of Cyclobutane Bonds in the Neutral [2+2] Dimer of C 60 . The Journal of Physical Chemistry A 101:7, pages 1378-1383.
Crossref
Masafumi Ata, Ken'ichi Kurihara & Noboru Takahashi. (1997) Direct Cross-Linking of C 70 in Ar Plasma . The Journal of Physical Chemistry B 101:1, pages 5-12.
Crossref
Jun Onoe & Kazuo Takeuchi. (1996) In situ high-resolution infrared spectroscopy of a photopolymerized film . Physical Review B 54:9, pages 6167-6171.
Crossref
Shuichi Ōsawa, Eiji Ōsawa & Masaomi Harada. (1996) Internal Rotation in the Singly Bonded Dimers of Substituted C 60 . A Molecular Lever . The Journal of Organic Chemistry 61:1, pages 257-265.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.