分子内力
聚合物
玻璃化转变
化学物理
材料科学
放松(心理学)
渗透(战争)
联轴节(管道)
分子动力学
热稳定性
热的
纳米技术
复合材料
化学工程
化学
计算化学
热力学
物理
立体化学
心理学
社会心理学
运筹学
工程类
作者
Houkuan Tian,Jintian Luo,Qiyun Tang,Hao Zha,Rodney D. Priestley,Wenbing Hu,Biao Zuo
标识
DOI:10.1038/s41467-024-50398-7
摘要
Abstract Over the past three decades, studies have indicated a mobile surface layer with steep gradients on glass surfaces. Among various glasses, polymers are unique because intramolecular interactions — combined with chain connectivity — can alter surface dynamics, but their fundamental role has remained elusive. By devising polymer surfaces occupied by chain loops of various penetration depths, combined with surface dissipation experiments and Monte Carlo simulations, we demonstrate that the intramolecular dynamic coupling along surface chains causes the sluggish bulk polymers to suppress the fast surface dynamics. Such effect leads to that accelerated segmental relaxation on polymer glass surfaces markedly slows when the surface polymers extend chain loops deeper into the film interior. The surface mobility suppression due to the intramolecular coupling reduces the magnitude of the reduction in glass transition temperature commonly observed in thin films, enabling new opportunities for tailoring polymer properties at interfaces and under confinement and producing glasses with enhanced thermal stability.
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