The dicarbon bonding puzzle viewed with photoelectron imaging
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Laws, Benjamin
Gibson, Stephen
Lewis, Brenton
Field, Robert
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Macmillan Publishers Ltd
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Bonding in the ground state of C2 is still a matter of controversy, as reasonable arguments may be made for a dicarbon bond order of 2, 3, or 4. Here we report on photoelectron spectra of the C−2 anion, measured at a range of wavelengths using a high-resolution photoelectron imaging spectrometer, which reveal both the ground X1Σ+g and first-excited a3Πu electronic states. These measurements yield electron angular anisotropies that identify the character of two orbitals: the diffuse detachment orbital of the anion and the highest occupied molecular orbital of the neutral. This work indicates that electron detachment occurs from predominantly s-like (3σg) and p-like (1πu) orbitals, respectively, which is inconsistent with the predictions required for the high bond-order models of strongly sp-mixed orbitals. This result suggests that the dominant contribution to the dicarbon bonding involves a double-bonded configuration, with 2π bonds and no accompanying σ bond.
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Laws, B.A., Gibson, S.T., Lewis, B.R. et al. The dicarbon bonding puzzle viewed with photoelectron imaging. Nat Commun 10, 5199 (2019). https://doi.org/10.1038/s41467-019-13039-y
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Nature Communications
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Open Access
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Creative Commons Attribution 4.0 International License
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