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◆ Condensed Matter2026-02-06· Density functional theory

Insights into Neutral vs. Deprotonated Phenol Adsorption on Graphene Oxide

Jeton Halili, Kledi Xhaxhiu, Nensi Isak, Makfire Sadiku, Arianit A. Reka, Muhamed Farruku, Авни Бериша

原始摘要(英文原文)· Original abstract
Water pollution from phenols remains a critical concern due to their persistence, toxicity, and industrial prevalence. Graphene oxide (GOx), with its functional groups and large surface area, offers strong adsorption potential. Using density functional theory (DFT), reduced density gradient (RDG), and quantitative structure–activity relationship (QSAR), we examined how protonation and substituents influence phenol adsorption. Deprotonated phenolates bind more strongly to GO than neutral species via electrostatics and H-bonding. Substituents alter affinity: halogens enhance it, bulky alkyls hinder it, and nitro groups show electron-withdrawing effects. Bisphenolate A displayed multidentate binding. QSAR models reproduced DFT energies with R2 > 0.99, enabling fast prediction. These results highlight how pH speciation and substituents govern adsorption on GO, guiding the design of efficient water treatment materials.
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Insights into Neutral vs. Deprotonated Phenol Adsorption on Graphene Oxide — 科研速览 Science Skim