TRIUMF, Vancouver, BC, Canada.
Soft Matter. 2018 Sep 19;14(36):7324-7334. doi: 10.1039/c8sm00812d.
There is indirect evidence that the dynamics of a polymer near a free surface are enhanced compared with the bulk but there are few studies of how dynamics varies with depth. β-Detected nuclear spin relaxation of implanted 8Li+ has been used to directly probe the temperature and depth dependence of the γ-relaxation mode, which is due to phenyl rings undergoing restricted rotation, in thin films of atactic deuterated polystyrene (PS-d8) and determine how the depth dependence of dynamics is affected by sample processing, such as annealing, floating on water and the inclusion of a surfactant, and by the presence of a buried interface. The activation energy for the γ-relaxation process is lower near the free surface. Annealing the PS-d8 films and then immersing in water to mimic the floating procedure used to transfer films had negligible effects on the thickness of the region near the free surface with enhanced mobility. Measurements on a bilayer film indicate enhanced phenyl ring dynamics near the buried interface compared with a single film at the same depth. PS-d8 films annealed with the surfactant sodium dodecyl sulfate (SDS) deposited on the surface show enhanced dynamics in the bulk compared with a pure PS-d8 film and a PS-d8 film where the SDS was washed away. There is less contrast between the surface and bulk in the SDS-treated sample, which could account for the elimination of the Tg confinement effect observed in films containing SDS [Chen and Torkelson, Polymer, 2016, 87, 226].
有间接证据表明,聚合物在自由表面附近的动力学比本体增强,但很少有研究探讨动力学如何随深度变化。β-探测核自旋弛豫的植入 8Li+ 已被用于直接探测γ-弛豫模式的温度和深度依赖性,这是由于苯环经历受限旋转,在无规聚苯乙烯(PS-d8)的薄膜中,并确定动力学的深度依赖性如何受到样品处理(例如退火、浮在水面上和包含表面活性剂)以及存在埋置界面的影响。γ-弛豫过程的活化能在自由表面附近较低。对 PS-d8 薄膜进行退火,然后浸入水中以模拟用于转移薄膜的浮法程序,对自由表面附近增强迁移率的区域的厚度几乎没有影响。对双层膜的测量表明,与同一深度的单层膜相比,埋置界面附近的苯环动力学增强。在表面沉积十二烷基硫酸钠(SDS)的 PS-d8 薄膜退火后,与纯 PS-d8 薄膜和 SDS 被洗掉的 PS-d8 薄膜相比,在本体中表现出增强的动力学。在经 SDS 处理的样品中,表面和本体之间的对比度较小,这可能解释了在含有 SDS 的薄膜中观察到的 Tg 限制效应的消除[Chen 和 Torkelson,聚合物,2016,87,226]。