arXiv · 2402.06917
Mixed equilibrium/nonequilibrium effects govern surface mobility in polymer glasses
Abstract
The temperature at which supercooled liquids turn into solid-like glasses ($T_g$) can change at the free surface, affecting the properties of nanostructured glasses and their applications. However, inadequate experimental resolution to determine the $T_g$ gradient and a longstanding debate over the role of nonequilibrium effects have hindered fundamental understanding of this phenomenon. Using spatially resolved $T_g$ measurements and molecular dynamics simulations, we reveal a crossover from equilibrium behavior to a new regime of near-surface nonequilibrium glass physics on cooling. This crossover causes the form of the nonequilibrium $T_g$ gradient to change, highlighting the need to include these physics for rational understanding of the properties of realistic nanostructured glass-forming materials. They also potentially recast the interpretation of decades of experimental data on nanoconfined glasses.
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Jianquan Xu, Asieh Ghanekarade, Li Li, Huifeng Zhu, Hailin Yuan, Jinsong Yan, David S. Simmons, Ophelia K. C. Tsui, Xinping Wang. 2024-02-10. Mixed equilibrium/nonequilibrium effects govern surface mobility in polymer glasses. https://arxiv.org/abs/2402.06917
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