Xu Jianquan, Guo Xiaojin, Guo Hongkai, Zhang Yizhi, Wang Xinping
Institute for School of Chemistry and Chemical Engineering, Key Laboratory of Surface & Interface Science of Polymer Materials of Zhejiang Province, Zhejiang Sci-Tech University, Hangzhou 310018, China.
Polymers (Basel). 2023 Dec 9;15(24):4655. doi: 10.3390/polym15244655.
The polymer/substrate interface plays a significant role in the dynamics of nanoconfined polymers because of its suppression on polymer mobility and its long-range propagation feature, while the molecular origin of the long-range substrate effect in unentangled polymer material is still ambiguous. Herein, we investigated the propagation distances of the substrate effect (*) by a fluorinated tracer-labeled method of two unentangled polymer films supported on silicon substrates: linear and ring poly(methyl methacrylate) films with relatively low molecular weights. The results indicate that the value of * has a molecular weight dependence of *∝ ( is the degree of polymerization) in the unentangled polymer films, while *∝ was presented as previously reported in the entangled films. A theoretical model, depending on the polymer/polymer intermolecular interaction, was proposed to describe the above long-range propagation behavior of the substrate effect and agrees with our experiment results very well. From the model, it revealed that the intermolecular friction determines the long-range propagation of the substrate effect in the unentangled system, but the intermolecular entanglement is the dominant role in entangled system. These results give us a deeper understanding of the long-range substrate effect.
聚合物/基底界面在纳米受限聚合物的动力学中起着重要作用,这是由于其对聚合物流动性的抑制及其远程传播特性,而在未缠结聚合物材料中远程基底效应的分子起源仍不明确。在此,我们通过氟化示踪标记法研究了支撑在硅基底上的两种未缠结聚合物薄膜(相对低分子量的线性和环状聚甲基丙烯酸甲酯薄膜)的基底效应传播距离()。结果表明,在未缠结聚合物薄膜中,值具有∝(是聚合度)的分子量依赖性,而在缠结薄膜中,如先前报道的那样呈现∝。提出了一个依赖于聚合物/聚合物分子间相互作用的理论模型来描述上述基底效应的远程传播行为,并且与我们的实验结果非常吻合。从该模型可知,分子间摩擦决定了未缠结体系中基底效应的远程传播,但分子间缠结在缠结体系中起主导作用。这些结果让我们对远程基底效应有了更深入的理解。