McGuire Jennifer A, Merrill James H, Couturier Alexander A, Thees Michael F, Roth Connie B
Department of Physics, Emory University, Atlanta, Georgia 30322, United States.
J Phys Chem B. 2025 Mar 13;129(10):2778-2788. doi: 10.1021/acs.jpcb.4c07902. Epub 2025 Mar 2.
In the present work, we use ellipsometry to extract the physical aging response of thin glassy polystyrene (PS) layers from rubbery-glassy bilayer films of poly(-butyl methacrylate) (PnBMA) atop PS. How the soft interface between rubbery and glassy polymer domains can impact the physical aging response of glassy domains is unclear. Measurements in the literature have shown that the local glass transition temperature of PS is strongly reduced near a PnBMA/PS interface with a magnitude twice as large compared to that imparted by a free surface. As the free surface is known to reduce physical aging, we anticipated large changes in the physical aging response of PS within PnBMA/PS bilayer films. However, surprisingly the aging response remained equivalent to bulk down to 75 nm PS layer thicknesses that were the thinnest we found could be accurately measured given the optical limits of dispersion. With complementary fluorescence measurements, we show that the average () of such PS layers within 150 nm PnBMA/75 nm PS bilayer films are also still bulk. These findings demonstrate that films with finite domain sizes have interfacial dynamical gradients that are significantly altered from those previously measured in systems with semi-infinite domain sizes.
在本工作中,我们使用椭偏仪从聚(甲基丙烯酸丁酯)(PnBMA)/聚苯乙烯(PS)橡胶态-玻璃态双层膜中提取薄玻璃态聚苯乙烯(PS)层的物理老化响应。橡胶态和玻璃态聚合物域之间的软界面如何影响玻璃态域的物理老化响应尚不清楚。文献中的测量表明,在PnBMA/PS界面附近,PS的局部玻璃化转变温度大幅降低,其幅度是自由表面所引起变化的两倍。由于已知自由表面会减缓物理老化,我们预计PnBMA/PS双层膜中PS的物理老化响应会有很大变化。然而,令人惊讶的是,在我们发现的考虑到色散光学极限能够准确测量的最薄至75 nm的PS层厚度下,老化响应仍与本体相当。通过互补的荧光测量,我们表明在150 nm PnBMA/75 nm PS双层膜中此类PS层的平均值()也仍与本体相当。这些发现表明,具有有限域尺寸的薄膜具有界面动力学梯度,这些梯度与先前在具有半无限域尺寸的系统中测量的梯度有显著不同。