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Synthesis, X-ray crystallography, COSMO-RS, and molecular electronic property investigation of a novel N-alkyl-substituted 5-chloroisatin derivative

Authors
El Moutaouakil Ala Allah, AbderrazzakMessali, MouslimSabik, AbdelazizKariuki, Benson M.Lee, Han-seungAlzahrani, Abdullah Yahya AbdullahLgaz, HassaneRamli, Youssef
Issue Date
Nov-2025
Publisher
Elsevier B.V.
Keywords
1H-indole-2,3-dione; Density functional theory; Isatin; Natural Bond Orbital; Noncovalent interactions; Single-crystal X-ray diffraction
Citation
Journal of Molecular Structure, v.1344, pp 1 - 13
Pages
13
Indexed
SCIE
SCOPUS
Journal Title
Journal of Molecular Structure
Volume
1344
Start Page
1
End Page
13
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/125688
DOI
10.1016/j.molstruc.2025.142995
ISSN
0022-2860
1872-8014
Abstract
A novel isatin derivative namely, 5‑chloro-1-pentylindoline-2,3‑dione was synthesized and thoroughly examined through a multi-technique approach encompassing single-crystal X-ray diffraction (XRD), density functional theory (DFT) computations, wavefunction-based topological analyses, and COSMO-RS solvation modeling. The XRD experiments confirmed the core indoline-2,3‑dione geometry, revealing a pentyl substituent in an all-trans conformation. DFT (B3LYP/6–311+G(d,p)) calculations closely reproduced these structural parameters, enabling deeper exploration of frontier molecular orbitals (FMOs), global reactivity descriptors, and molecular electrostatic potential (MESP). A Natural Bond Orbital (NBO) analysis revealed pronounced hyperconjugation and electron delocalization around the ring system and carbonyl moieties, while the Fukui functions indicated nucleophilic sites near the ring nitrogen and carbonyl oxygens, with electrophilic susceptibility at various ring carbons. The compound's moderate first hyperpolarizability (βtot​) suggested potential for second-order nonlinear optical responses. In addition, COSMO-RS (Conductor-like Screening Model for Real Solvents) simulations in water, ethanol, and DMSO highlighted stable solvation energies and a significant hydrogen-bond acceptor capacity at the carbonyl sites. Overall, this integrated study underscores how alkylation modulates the structural, electronic, and solvation characteristics of isatin-based scaffolds, paving the way for further functional or therapeutic applications. © 2025 Elsevier B.V.
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ERICA부총장 한양인재개발원 (ERICA 창의융합교육원)
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