Chang Yincheng, Jiao Yang, Symons Henry E, Xu Jiang-Fei, Faul Charl F J, Zhang Xi
Key Lab of Organic Optoelectronics and Molecular Engineering, Department of Chemistry, Tsinghua University, Beijing 100084, China.
School of Chemistry, University of Bristol, Bristol BS8 1TS, UK.
Chem Soc Rev. 2019 Feb 18;48(4):989-1003. doi: 10.1039/c8cs00806j.
Polymeric supra-amphiphiles are amphiphiles that are fabricated by linking polymeric segments, or small molecules and polymeric segments, by noncovalent interactions or dynamic covalent bonds. Compared with conventional amphiphilic polymers, polymeric supra-amphiphiles are advantageous in that they possess dynamic features and their preparation may be to some extent more facile. Moreover, polymeric supra-amphiphiles are endowed with richer structure and higher stability compared with small-molecule supra-amphiphiles. Owing to these properties, polymeric supra-amphiphiles have so far shown great promise as surfactants, nanocarriers and in therapies. In this tutorial review, recent work on polymeric supra-amphiphiles, from molecular architectures to functional assemblies, is presented and summarized. Different polymeric supra-amphiphile topologies and related applications are highlighted. By combining polymer chemistry with supramolecular chemistry and colloid science, we anticipate that the study of polymeric supra-amphiphiles will promote the continued development of the molecular engineering of functional supramolecular systems, and lead to practical applications, especially in drug delivery.
聚合物超两亲分子是通过非共价相互作用或动态共价键连接聚合物链段、小分子与聚合物链段而制备的两亲分子。与传统两亲聚合物相比,聚合物超两亲分子具有动态特性,其制备在一定程度上更为简便,因而具有优势。此外,与小分子超两亲分子相比,聚合物超两亲分子具有更丰富的结构和更高的稳定性。由于这些特性,聚合物超两亲分子在作为表面活性剂、纳米载体以及治疗方面已展现出巨大的应用前景。在本教程综述中,介绍并总结了聚合物超两亲分子从分子结构到功能组装的近期研究工作。重点阐述了不同的聚合物超两亲分子拓扑结构及其相关应用。通过将高分子化学与超分子化学及胶体科学相结合,我们预计聚合物超两亲分子的研究将推动功能性超分子体系分子工程的持续发展,并带来实际应用,尤其是在药物递送方面。