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Updated: Aug 24, 2026

Synthesis of Terpolymers at Mild Temperatures Using Dynamic Sulfur Bonds in Poly(S-Divinylbenzene)
Published on: May 20, 2019
Morphology controls nonlinear donor acceptor thermodynamics in divinylbenzene-based copolymers
Tayssir Hamieh1,2,3
1Faculty of Science and Engineering, Maastricht University, P.O. Box 616, Maastricht 6200 MD, the Netherlands.
None:
Understanding how surface morphology governs molecular adsorption remains a fundamental challenge in interfacial science. Here, inverse gas chromatography at infinite dilution is combined with a generalized five-parameter Lewis acid-base model to investigate adsorption on divinylbenzene-based copolymers. Statistical model discrimination demonstrates that nonlinear donor-acceptor coupling and curvature are intrinsic features of polymer adsorption energetics. Independent thermo-geometric analysis further reveals that the adsorbed molecular footprint follows a common quadratic dependence on temperature and specific surface area, establishing a direct coupling between adsorption geometry and energetics. Quantitative correlations between geometric and energetic descriptors demonstrate that both originate from the same morphology-controlled interfacial field. These findings establish a unified thermodynamic framework in which specific surface area governs molecular packing and interaction strength, providing a predictive basis for understanding and engineering adsorption phenomena at heterogeneous polymer interfaces.
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