Epps Iii Thomas H, O'Reilly Rachel K
Department of Chemical and Biomolecular Engineering and Department of Materials Science and Engineering , University of Delaware , Newark , Delaware 19716 , USA . Email:
Department of Chemistry , University of Warwick , Gibbet Hill , Coventry , CV4 7AL , UK . Email:
Chem Sci. 2016 Mar 1;7(3):1674-1689. doi: 10.1039/c5sc03505h. Epub 2016 Jan 13.
In this perspective, we survey recent advances in the synthesis and characterization of block copolymers, discuss several key materials opportunities enabled by block copolymers, and highlight some of the challenges that currently limit further realization of block copolymers in promising nanoscale applications. One significant challenge, especially as the complexity and functionality of designer macromolecules increases, is the requirement of multiple complementary techniques to fully characterize the resultant polymers and nanoscale materials. Thus, we highlight select characterization and theoretical methods and discuss how future advances can improve understanding of block copolymer systems. In particular, we consider the application of theoretical/simulation methods to the rationalization, and prediction, of observed experimental self-assembly phenomena. Finally, we explore several next steps for the field and emphasize some general areas of emerging research that could unlock additional opportunities for nanostructure-forming block copolymers in functional materials.
从这个角度出发,我们综述了嵌段共聚物合成与表征方面的最新进展,讨论了嵌段共聚物带来的几个关键材料机遇,并强调了目前限制嵌段共聚物在有前景的纳米级应用中进一步实现的一些挑战。一个重大挑战,尤其是随着定制大分子的复杂性和功能性增加,是需要多种互补技术来全面表征所得聚合物和纳米级材料。因此,我们重点介绍了选定的表征和理论方法,并讨论了未来的进展如何能增进对嵌段共聚物体系的理解。特别是,我们考虑理论/模拟方法在合理化和预测观察到的实验自组装现象方面的应用。最后,我们探索了该领域的几个下一步方向,并强调了一些新兴研究的一般领域,这些领域可能为功能材料中形成纳米结构的嵌段共聚物带来更多机遇。