Abstract
Electrophilic thiocyanation directly installs SCN groups, yet the design of thiocyanating reagents remains largely empirical. We report a large-language-model (LLM)-assisted workflow for candidate ideation, manual structure curation, relative thermodynamic screening, and electronic-structure interpretation of Y-SCN-type electrophilic thiocyanating reagents. LLM-proposed structures were inspected and curated, and 38 candidates were evaluated using a common DFT protocol. Relative SCN-transfer tendency was quantified by ΔΔGSCNNTS, an isodesmic exchange free energy referenced to N-thiocyanatosuccinimide, while homolytic-cleavage tendency was assessed by the Y-SCN bond dissociation enthalpy, ΔH(BDE). The ΔΔGSCNNTS values range from −55.51 to +17.47 kcal mol−1, revealing wide variation across the library. Multiwfn analysis relates SCN-transfer free energy to SCN charge distribution and polarization, and ΔH(BDE) to local Y-S-C bonding and geometry. A nitro-saccharin-derived candidate, 6-nitro-N-thiocyanatosaccharin, was synthesized and characterized. Overall, the workflow provides a transparent thermodynamic decision map for prioritizing LLM-assisted reagent proposals.
| Original language | English |
|---|---|
| Article number | 115946 |
| Journal | Computational and Theoretical Chemistry |
| Volume | 1264 |
| DOIs | |
| Publication status | Published - Oct 2026 |
| Externally published | Yes |
Keywords
- DFT screening
- Electrophilic thiocyanation
- LLM-assisted molecular generation
- Multiwfn descriptor analysis
- Reagent design
- Thermodynamic screening
- Thiocyanating reagents
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