Unraveling the Conformational and Electronic Landscape of 3-Pyridinecarboxaldehyde: A Spectroscopic Journey through Conformer-Specific Ionization

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초록

3-Pyridinecarboxaldehyde (3-PCA) is a versatile building block, but its conformational and ionization behavior remains underexplored. Using high-resolution IR-resonant vacuum ultraviolet mass-analyzed threshold ionization spectroscopy and Franck-Condon simulations, two conformers, s-cis and s-trans, were identified in the gas phase, distinguished by adiabatic ionization energies of 76 123 +/- 4 and 76 173 +/- 4 cm-1, respectively, and revealing conformer-specific structural dynamics and frontier orbital changes during ionization. Computational analyses, including anharmonic and natural bond orbital studies, provided structural and electronic insights. Analysis of jet-cooled conformer populations indicated an S0-state energy difference of 40 +/- 14 cm-1, while in the D0 state, the two conformers are essentially near-isoenergetic within experimental uncertainty (approximate to -10 +/- 14 cm-1). These results highlight the delicate balance of cationic conformer stability and its distinct ionization behavior. This work provides conformer-specific spectroscopic and theoretical benchmarks for understanding ionization-induced structural and stereoelectronic effects in formyl-substituted pyridines with implications for their reactivity and excited-state dynamics.

키워드

conformational preferenceIR-resonant VUV-MATIconformer-specific photoionization dynamicsidentifiablevibrational spectra of individual conformersequilibriumconstant of conformersDENSITY FUNCTIONALSROTATIONAL ISOMERSENERGY-LEVELS2-PYRIDINECARBOXALDEHYDESPECTRA
제목
Unraveling the Conformational and Electronic Landscape of 3-Pyridinecarboxaldehyde: A Spectroscopic Journey through Conformer-Specific Ionization
저자
Park, Sung ManKim, HyojungKwon, Chan Ho
DOI
10.1021/acsphyschemau.5c00088
발행일
2025-11-26
유형
Article
저널명
ACS PHYSICAL CHEMISTRY AU
5
6
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729 ~ 739