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January 1, 2019Chemical Science149 citationsOpen Access

Symmetry breaking and the turn-on fluorescence of small, highly strained carbon nanohoops

TLTerri C. LovellCCCurtis E. ColwellLZLev N. Zakharov

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Abstract

]cycloparaphenylenes. Advantageously, the symmetry breaking leads to bright emission in the smaller nanohoops, which are typically non-fluorescent due to optical selection rules. Moreover, this simple structural manipulation retains one of the most unique features of the nanohoop structures-size dependent emissive properties with relatively large extinction coefficients and quantum yields. Inspired by earlier theoretical work by Tretiak and co-workers, this joint synthetic, photophysical, and theoretical study provides further design principles to manipulate the optical properties of this growing class of molecules with radially oriented π-systems.

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Cite This Study

Lovell et al. (2019) studied this question.

synapsesocial.com/papers/6a632786f2b0f326716a6d9chttps://doi.org/10.1039/c9sc00169g
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