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Articles

Noncovalent interactions of nucleic acid bases with fullerene C60 and short carbon nanotube models: a dispersion-corrected DFT study

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Pages 205-212 | Received 14 Jun 2016, Accepted 04 Oct 2016, Published online: 17 Oct 2016

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Vladimir A. Basiuk & Elena V. Basiuk. (2018) Noncovalent complexes of Ih−C80 fullerene with phthalocyanines. Fullerenes, Nanotubes and Carbon Nanostructures 26:2, pages 69-75.
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Articles from other publishers (5)

Mohd Athar & Archita Patnaik. (2022) Through-Bond-Driven Through-Space Interactions in a Fullerene C 60 Noncovalent Dyad: An Unusual Strong Binding between Spherical and Planar π Electron Clouds and Culmination of Dyadic Fractals . The Journal of Physical Chemistry A 126:23, pages 3629-3641.
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Miguel Reina, Christian A. Celaya & Jesús Muñiz. (2021) C 36 and C 35 E (E=N and B) Fullerenes as Potential Nanovehicles for Neuroprotective Drugs: A Comparative DFT Study . ChemistrySelect 6:19, pages 4844-4858.
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Flavio F. Contreras‐Torres, Elena V. Basiuk & Vladimir A. Basiuk. (2019) A dispersion‐corrected density functional theory study of the noncovalent interactions between nucleobases and carbon nanotube models containing stone–wales defects. Journal of Computational Chemistry 41:8, pages 780-789.
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Swati Sinha, Kunal Biswas, Debashis De, Jaya Bandyopadhyay & Angsuman Sarkar. (2017) Metal to semimetal conversion by band structure engineering of SWCNT by DNA nucleobase functionalization. Microsystem Technologies 25:5, pages 1563-1570.
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Sara Aranifard & Akbar Shojaei. (2018) Bare and functionalized nanodiamonds in aqueous media: A theoretical study. Diamond and Related Materials 89, pages 301-311.
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