Photo-Electronic Hybrids Research Center, Korea Institute of Science and Technology (KIST) , Seoul 02792, South Korea.
Department of Chemical and Biomolecular Engineering, Sogang University , Seoul 04107, South Korea.
ACS Appl Mater Interfaces. 2017 May 24;9(20):17427-17434. doi: 10.1021/acsami.7b02910. Epub 2017 May 10.
Block copolymers (BCPs) with a high Flory-Huggins interaction parameter (χ) can form well-defined sub-10 nm periodic structures and can be used as a template for fabrication of various functional nanostructures. However, the large difference of surface energy between the blocks commonly found in high-χ BCPs makes it challenging to stabilize a useful gyroid morphology in thin film form. Here, we used an interfacial-energy-tailored top-coat on a blended film of a polystyrene-block-polydimethylsiloxane (PS-b-PDMS) BCP and a low-molecular-weight PDMS homopolymer with a hydrophilic end functional group. The top coat consisted of a random mixture of 40% hydrolyzed poly(vinyl acetate)-random-poly(vinly alcohol) (PVA-r-PVAc, PVA40) and PVAc homopolymer. At the optimized top-coat composition, gyroid nanostructures with sub-10 nm strut width were achieved down to ∼125 nm film thickness, which is only 3 times the lattice parameter of the gyroid structure. This is in marked contrast with a mixed morphology of gyroid and cylinders obtained for other compositions of the top coat. Self-consistent field theoretic simulations were used to understand the effect of the interfacial energy between the top coat and BCP/homopolymer blends on the phase transition behavior of the BCP/homopolymer films.
具有高 Flory-Huggins 相互作用参数 (χ) 的嵌段共聚物 (BCP) 可以形成定义明确的亚 10nm 周期性结构,并可用作制造各种功能纳米结构的模板。然而,高 χ BCP 中常见的嵌段之间的表面能差异很大,这使得在薄膜形式下稳定有用的向列形貌具有挑战性。在这里,我们在聚苯乙烯嵌段聚二甲基硅氧烷 (PS-b-PDMS) BCP 和具有亲水性端官能团的低分子量 PDMS 均聚物的共混膜上使用了具有界面能的顶层涂料。顶层涂料由 40%水解的聚醋酸乙烯酯-随机聚(乙烯醇)(PVA-r-PVAc,PVA40)和 PVAc 均聚物的随机混合物组成。在优化的顶层涂料组成下,亚 10nm 支柱宽度的向列纳米结构在低至约 125nm 薄膜厚度下实现,这仅为向列结构晶格参数的 3 倍。这与其他顶层涂料组成下获得的向列和圆柱混合形态形成鲜明对比。自洽场理论模拟用于理解顶层涂料和 BCP/均聚物共混物之间的界面能对 BCP/均聚物薄膜相转变行为的影响。