Wang Mingming, Song Yang, Zhang Shuai, Zhang Xin, Cai Xiaoli, Lin Yuehe, De Yoreo James J, Chen Chun-Long
Physical Sciences Division, Pacific Northwest National Laboratory, Richland, WA 99352, USA.
School of Mechanical and Materials Engineering, Washington State University, Pullman, WA 99164, USA.
Sci Adv. 2021 May 14;7(20). doi: 10.1126/sciadv.abg1448. Print 2021 May.
Inspired by the formation of hierarchically structured natural biominerals (e.g., bone and tooth), various sequence-defined polymers have been synthesized and exploited for design and synthesis of functional hybrid materials. Here, we synthesized a series of organic-inorganic hybrid peptoids by using polyhedral oligomeric silsesquioxane (POSS) nanoclusters as side chains at a variety of backbone locations. We further demonstrated the use of these hybrid peptoids as sequence-defined building blocks to assemble a new class of programmable two-dimensional (2D) nanocrystals. They are highly stable and exhibit an enhanced mechanical property and electron scattering due to the incorporated POSS nanoclusters. By varying peptoid side-chain chemistry, we further demonstrated the precise displacement of a large variety of function groups within these 2D nanocrystals and developed a highly efficient aqueous light-harvesting system for live cell imaging. Because these 2D nanocrystals are biocompatible and highly programmable, we expect that they offer unique opportunities for applications.
受分层结构天然生物矿物(如骨骼和牙齿)形成的启发,人们合成了各种序列定义的聚合物,并将其用于功能杂化材料的设计与合成。在此,我们通过在各种主链位置使用多面体低聚倍半硅氧烷(POSS)纳米簇作为侧链,合成了一系列有机-无机杂化类肽。我们进一步展示了使用这些杂化类肽作为序列定义的构建块来组装一类新型的可编程二维(2D)纳米晶体。由于掺入了POSS纳米簇,它们具有高度稳定性,并表现出增强的机械性能和电子散射。通过改变类肽侧链化学性质,我们进一步证明了在这些二维纳米晶体内各种官能团的精确置换,并开发了一种用于活细胞成像的高效水性光捕获系统。由于这些二维纳米晶体具有生物相容性且高度可编程,我们预计它们将为应用提供独特的机会。