Patel Bijal B, Walsh Dylan J, Patel Kush, Kim Do Hoon, Kwok Justin J, Guironnet Damien, Diao Ying
Department of Chemical and Biomolecular Engineering, University of Illinois at Urbana-Champaign, 600 South Mathews Avenue, Urbana, IL 61801, USA.
Department of Materials Science and Engineering, University of Illinois at Urbana-Champaign, 1304 W. Green Street, Urbana, Illinois 61801, USA.
Soft Matter. 2022 Feb 23;18(8):1666-1677. doi: 10.1039/d1sm01634b.
Favorable polymer-substrate interactions induce surface orientation fields in block copolymer (BCP) melts. In linear BCP processed near equilibrium, alignment of domains generally persists for a small number of periods (∼4-6 ) before randomization of domain orientation. Bottlebrush BCP are an emerging class of materials with distinct chain dynamics stemming from substantial molecular rigidity, enabling rapid assembly at ultrahigh (>100 nm) domain periodicities with strong photonic properties (structural color). This work assesses interface-induced ordering in PS--PLA bottlerush diblock copolymer films during thermal annealing between planar surfaces. To clearly observe the decay in orientational order from surface to bulk, we choose to study micron-scale films spanning greater than 200 lamellar periods. optical microscopy and transmission UV-Vis spectroscopy are used to monitor photonic properties during annealing and paired with UV-Vis reflection measurement, cross-sectional scanning electron microscopy (SEM), and small-angle X-ray scattering (SAXS) to probe the evolution of domain microstructure. Photonic properties were observed to saturate within minutes of annealing at 150 °C, with distinct variation in transmission response as a function of film thickness. The depth of the highly aligned surface region was found to vary stochastically in the range of 30-100 lamellar periods, with the sharpness of the orientation gradient decreasing substantially with increasing film thickness. This observation suggests a competition between growth of aligned, heterogeneously nucleated, grains at the surface and orientationally isotropic, homogeneously nucleated, grains throughout the bulk. This work demonstrates the high potential of bottlebrush block copolymers in rapid fabrication workflows and provides a point of comparison for future application of directed self-assembly to BBCP ordering.
有利的聚合物-基底相互作用会在嵌段共聚物(BCP)熔体中诱导表面取向场。在接近平衡状态下加工的线性BCP中,畴的排列通常会在畴取向随机化之前持续少数几个周期(约4-6个)。刷状BCP是一类新兴材料,由于其分子具有相当大的刚性,因而具有独特的链动力学,能够在超高(>100 nm)的畴周期下实现快速组装,并具有很强的光子特性(结构色)。这项工作评估了平面表面之间热退火过程中PS-PLA刷状二嵌段共聚物薄膜中界面诱导的有序性。为了清晰地观察从表面到本体的取向有序性衰减,我们选择研究跨越200多个层状周期的微米级薄膜。光学显微镜和透射紫外-可见光谱用于监测退火过程中的光子特性,并与紫外-可见反射测量、横截面扫描电子显微镜(SEM)和小角X射线散射(SAXS)相结合,以探测畴微观结构的演变。观察到在150°C退火几分钟内光子特性就达到饱和,透射响应随薄膜厚度有明显变化。发现高度取向的表面区域深度在30-100个层状周期范围内随机变化,取向梯度的锐度随着薄膜厚度的增加而显著降低。这一观察结果表明,表面取向排列的、异质成核的晶粒生长与整个本体中取向各向同性的、均匀成核的晶粒生长之间存在竞争。这项工作证明了刷状嵌段共聚物在快速制造流程中具有很高的潜力,并为未来将定向自组装应用于BCP有序化提供了一个比较点。