We resolve the Schr\"{o}der paradox for PNiPAAm brushes, showing experimentally that swelling at 100\% relative humidity (RH) matches the liquid state. This occurs via a sharp increase in swelling above 98\%~RH, a behavior standard models fail to explain. Our extended mean-field theory explains this via a positive feedback between swelling and solvent quality, driven by a concentration-dependent χ parameter. The swelling isotherm quantitatively predicts the dynamic wetting crossover: the advancing contact angle at high velocities drops sharply as ambient humidity surpasses the 98\%~RH threshold.
@article{arxiv.2510.24716,
title = {Positive Feedback Drives Sharp Swelling of Polymer Brushes near Saturation},
author = {Simon Schubotz and Eva Bittrich and Holger Merlitz and Quinn A. Besford and Petra Uhlmann and Jens-Uwe Sommer and Günter K. Auernhammer},
journal= {arXiv preprint arXiv:2510.24716},
year = {2025}
}