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Pyridine derivatives are integral to fields such as organic chemistry, materials science, and pharmaceuticals owing to their distinct electronic and structural properties. While fluorine substitution on the pyridine ring is known to modulate these properties, the specific effects of fluorine positioning-particularly at the and positions-on the molecular orbitals, ionization energies, and cationic structures remain insufficiently understood. In this study, we investigate the ionization-induced structural dynamics of 2,3-difluoropyridine (2,3-DFP), which incorporates both - and -fluorine substituents, using high-resolution vacuum ultraviolet mass-analyzed threshold ionization (VUV-MATI) spectroscopy in conjunction with Franck-Condon (FC) simulations and natural bond orbital analysis. Precise measurement of the adiabatic ionization energy (AIE) yields a value of 9.6958 ± 0.0004 eV for 2,3-DFP, which is lower than that of 2,6-DFP due to weaker hyperconjugative stabilization of the highest occupied molecular orbital (HOMO) by -fluorine. The VUV-MATI spectrum reveals significant geometric distortion upon ionization, notably in out-of-plane vibrational modes, which become FC-active due to symmetry lowering. FC fitting with a refined, slightly nonplanar geometry closely reproduces the experimental spectrum. Additional unassigned peaks are attributed to the D state, originating from ionization of the HOMO-1 nonbonding orbital, and a second AIE of 9.7643 ± 0.0004 eV is proposed. These findings clarify how fluorine substitution patterns modulate valence orbital energies, cationic structures, and vibrational dynamics. This work provides a detailed framework for understanding the stereoelectronic effects of fluorination in heteroaromatic systems and offers practical insight for designing functional materials and pharmaceuticals with tunable electronic properties.
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http://dx.doi.org/10.1039/d5cp02425k | DOI Listing |
ACS Appl Mater Interfaces
September 2025
Department of Chemistry and Shanghai Key Laboratory of Molecular Catalysis and Innovative Materials, Institute of New Energy, iChEM (Collaborative Innovation Center of Chemistry for Energy Materials), Fudan University, Shanghai 200433, China.
Li-metal batteries promise ultrahigh energy density, but their application is limited by Li-dendrite growth. Theoretically, fluorine-containing anions such as bis(fluorosulfonyl)imide (FSI) in electrolytes can be reduced to form LiF-rich solid-electrolyte interphases (SEIs) with high Young's modulus and ionic conductivity that can suppress dendrites. However, the anions migrate toward the cathode during the charging process, accompanied by a decrease in the concentration of interfacial anions near the anode surface.
View Article and Find Full Text PDFJ Org Chem
September 2025
Sichuan Engineering Research Center for Biomimetic Synthesis of Natural Drugs, School of Life Science and Engineering, Southwest Jiaotong University, Chengdu 610031, China.
A novel electrochemical/Fe dual-catalyzed perfluoroalkylation-thiolization of alkenes under mild conditions has been developed. This protocol utilizes commercially available reagents, cheap electrodes, and simple equipment. Diverse polyfunctionalized perfluoroalkyl-substituted derivatives were successfully obtained in a direct and efficient way with a broad substrate scope and excellent functional group tolerance.
View Article and Find Full Text PDFOrg Biomol Chem
September 2025
A.N. Nesmeyanov Institute of Organoelement Compounds, Russian Academy of Sciences, 28, bld. 1 Vavilova St, 119334 Moscow, Russian Federation.
4,4-Difluoro-4-bora-3,4-diaza--indacene systems (BODIPY) are widely investigated fluorophores. The BODIPY core allows for introducing substituents at different positions. Taking advantage of the versatile properties of carborane cages for the modification of photoactive compounds, we developed the synthesis of carborane-substituted BODIPYs.
View Article and Find Full Text PDFOrg Lett
September 2025
N. D. Zelinsky Institute of Organic Chemistry, Leninsky Prospekt 47, Moscow 119991, Russian Federation.
The first radical addition to mesoionic heterocycles, enabling direct functionalization of sydnones with perfluoroalkyl groups with retention of the mesoionic structure, is described. The fluorinated sydnones were subsequently involved in the energy-transfer-mediated cycloaddition with silyl enol ethers. This approach provides efficient access to medicinally relevant perfluoroalkylated pyrazole derivatives with complete regiocontrol.
View Article and Find Full Text PDFAngew Chem Int Ed Engl
September 2025
Hebei Key Laboratory of Functional Polymer, School of Chemical Engineering and Technology, Hebei University of Technology, Tianjin, 300130, China.
Hydrogels hold great promises in intelligent wearable gesture-to-recognition translation devices, but high mechanical robustness usually encounters low sensitivity and poor cycling stability, it is pivotal and challenging to balance energy dissipation and conductivity. Herein, the soft-hard multiphase hydrogels have been proposed for the first time through noncovalently threading polymerizable deep eutectic solvent (PDES) into hydrogen-bonded organic frameworks (HOFs). Fluorine groups on HOF (HOF-F) are presented as the hydrogen bond acceptors to form multiple noncovalent interactions between HOF-F and PDES, which expedites the energy dissipation with synchronous increment of ion transport in hydrogels.
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