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Unraveling the Spectroscopy of the Phenalenyl Radical.


ABSTRACT: Jet-cooled excitation spectra of the phenalenyl radical are obtained using resonance enhanced multiphoton ionization. The excitation spectra reveal previously unobserved transitions, up to 17,000 cm-1 above the D1 origin, including transitions to electronically forbidden A2 electronic states. A quasi-diabatic approach is applied to construct a vibronic Hamiltonian, including both Jahn-Teller and pseudo-Jahn-Teller interactions, between seven excited electronic surfaces. This is employed to calculate the electronic excitation spectrum of the phenalenyl radical in its entirety, providing vibronic assignments and spectral parameters to help decode the spectroscopy of this key radical.

SUBMITTER: Levey ZD 

PROVIDER: S-EPMC12464889 | biostudies-literature | 2025 Sep

REPOSITORIES: biostudies-literature

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Unraveling the Spectroscopy of the Phenalenyl Radical.

Levey Zachariah D ZD   Laws Benjamin A BA   Hansen Christopher S CS   Stanton John F JF   Kable Scott H SH   Schmidt Timothy W TW  

ACS physical chemistry Au 20250805 5


Jet-cooled excitation spectra of the phenalenyl radical are obtained using resonance enhanced multiphoton ionization. The excitation spectra reveal previously unobserved transitions, up to 17,000 cm<sup>-1</sup> above the D<sub>1</sub> origin, including transitions to electronically forbidden A<sub>2</sub> <sup>″</sup> electronic states. A quasi-diabatic approach is applied to construct a vibronic Hamiltonian, including both Jahn-Teller and <i>pseudo</i>-Jahn-Teller interactions, between seven e  ...[more]

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