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Original Articles

Nanometric lattice defects and distortion in the Buckyball cage in C60 films revealed by scanning tunnelling microscopy

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Pages 101-106 | Received 18 Sep 1992, Accepted 26 Oct 1992, Published online: 04 Oct 2006

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B.R. Eggen, M.I. Heggie, G. Jungnickel, C.D. Latham, R. Jones & P.R. Briddon. (1997) Carbon Atoms Catalyse Fullerene Growth. Fullerene Science and Technology 5:4, pages 727-745.
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Articles from other publishers (6)

João P. Cachaneski-Lopes & Augusto Batagin-Neto. (2021) Effects of structural distortion on the optoelectronic properties and reactivity of fullerenes: a DFT study. Journal of Nanostructure in Chemistry 12:2, pages 141-157.
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A J M Nascimento & R W Nunes. (2013) Lubrication of Stone–Wales transformations in graphene by hydrogen and hydroxyl functional groups. Nanotechnology 24:43, pages 435707.
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A.A. Ovcharov & M.D. Starostenkov. (1998) The static waves of atomic displacements accumulation effect, inside a zone of elastic to plastic transformation. Carbon 36:5-6, pages 633-636.
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B. R. EggenM. I. HeggieG. JungnickelC. D. LathamR. JonesP. R. Briddon. (1996) Autocatalysis During Fullerene Growth. Science 272:5258, pages 87-90.
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Chad A. Mirkin & W. Brett Caldwell. (1996) Thin film, fullerene-based materials. Tetrahedron 52:14, pages 5113-5130.
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. (1997) Observational studies of imperfect carbon cage structures of C 60 by high-resolution scanning tunnelling microscopy . Proceedings of the Royal Society of London. Series A: Mathematical and Physical Sciences 444:1921, pages 325-332.
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