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- W2047907592 endingPage "450" @default.
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- W2047907592 abstract "Icosahedral carbon clusters with pentagonal and hexagonal faces are Goldberg polyhedra. They have 20(b2 +bc + c2) atoms, where b and c are non-negative integers, and obey an electron-counting rule similar to the famous Hückel (4n + 2) prescription. When b − c is divisible by 3 the cluster has a multiple of 60 atoms and is closed-shell; otherwise it has 60n + 20 atoms and is open-shell. A geometrical interpretation of this rule is: open-shell Goldberg clusters have atoms on the C3 axes, closed-shell clusters do not. Closed shells are predicted for C60, C180, C240, C420, C540,.... Irrespective of pointgroup symmetry, structures of large clusters may be generated by a leapfrog method from smaller ones. A tetrahedral structure generated in this way is the best candidate for C120" @default.
- W2047907592 created "2016-06-24" @default.
- W2047907592 creator A5047753351 @default.
- W2047907592 date "1986-11-01" @default.
- W2047907592 modified "2023-09-27" @default.
- W2047907592 title "How unusual is C60? Magic numbers for carbon clusters" @default.
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- W2047907592 doi "https://doi.org/10.1016/0009-2614(86)80563-2" @default.
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