Pula Przemyslaw, Leniart Arkadiusz, Majewski Pawel W
Department of Chemistry, University of Warsaw, Warsaw 02089, Poland.
Soft Matter. 2022 Jun 1;18(21):4042-4066. doi: 10.1039/d2sm00439a.
Solvent-assisted block copolymer self-assembly is a compelling method for processing and advancing practical applications of these materials due to the exceptional level of the control of BCP morphology and significant acceleration of ordering kinetics. Despite substantial experimental and theoretical efforts devoted to understanding of solvent-assisted BCP film ordering, the development of a universal BCP patterning protocol remains elusive; possibly due to a multitude of factors which dictate the self-assembly scenario. The aim of this review is to aggregate both seminal reports and the latest progress in solvent-assisted directed self-assembly and to provide the reader with theoretical background, including the outline of BCP ordering thermodynamics and kinetics phenomena. We also indicate significant BCP research areas and emerging high-tech applications where solvent-assisted processing might play a dominant role.
溶剂辅助嵌段共聚物自组装是一种极具吸引力的方法,可用于这些材料的加工并推进其实际应用,这是因为它对BCP形态的控制水平极高,且能显著加速有序动力学。尽管在理解溶剂辅助BCP薄膜有序化方面投入了大量的实验和理论研究,但通用的BCP图案化方案仍难以实现;这可能是由于众多因素决定了自组装情况。本综述的目的是汇总溶剂辅助定向自组装方面的开创性报告和最新进展,并为读者提供理论背景,包括BCP有序化热力学和动力学现象的概述。我们还指出了溶剂辅助加工可能发挥主导作用的重要BCP研究领域和新兴高科技应用。