Chen Ruiwen, Berda Erik B
ACS Macro Lett. 2020 Dec 15;9(12):1836-1843. doi: 10.1021/acsmacrolett.0c00774. Epub 2020 Dec 4.
Single-chain nanoparticles (SCNP) are a class of polymeric nanoparticles obtained from the intramolecular cross-linking of polymers bearing reactive pendant groups. The development of SCNP has drawn tremendous attention since the fabrication of SCNP mimics the self-folding behavior in natural biomacromolecules and is highly desirable for a variety of applications ranging from catalysis, nanomedicine, nanoreactors, and sensors. The versatility of novel chemistries available for SCNP synthesis has greatly expanded over the past decade. Significant progress was also made in the understanding of a structure-property relationship in the single-chain folding process. In this Viewpoint, we discuss the effect of precursor polymer topology on single polymer folding. We summarize the progress in SCNP of complex architectures and highlight unresolved issues in the field, such as scalability and topological purity of SCNP.
单链纳米颗粒(SCNP)是一类通过带有反应性侧基的聚合物分子内交联获得的聚合物纳米颗粒。自从SCNP的制备模仿了天然生物大分子中的自折叠行为,并且在催化、纳米医学、纳米反应器和传感器等各种应用中非常受欢迎以来,SCNP的发展引起了极大关注。在过去十年中,可用于SCNP合成的新型化学方法的多功能性有了很大扩展。在理解单链折叠过程中的结构-性质关系方面也取得了重大进展。在这一观点中,我们讨论了前体聚合物拓扑结构对单个聚合物折叠的影响。我们总结了复杂结构SCNP的进展,并强调了该领域尚未解决的问题,如SCNP的可扩展性和拓扑纯度。