Nano-thin 2D Soft Materials – Design Principles and Prospects

Mykhailo Vybornyi, Hao Yu, R. Häner
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Abstract

Established less than a decade ago, the fascinating field of two-dimensional (2D) soft materials is advancing continuously towards widespread recognition. After demonstrating the feasibility of obtaining nano-thin supramolecular sheets and morphologically related tubular objects, considerable efforts are undertaken to explore the functional potential of soft nanosheets. Self-assembly is a major tool for the controlled formation of nanometer sized 2D objects. In this account, we share our current understanding of the structural requirements to direct the self-assembly of water-soluble, negatively charged oligomers in 2D. The discussion covers some promising areas of utilization such as the reporting of weak mechanical perturbations, the assembly of light-harvesting antennae, the transfer of excitation energy and the polymerization of pre-organized assemblies. The systems presented in this work illustrate the potential of 2D supramolecular materials as complementary systems to their covalent counterparts.
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纳米薄二维软材料-设计原则和前景
二维(2D)软材料这一迷人的领域成立不到十年,目前正不断向广泛认可的方向发展。在证明了获得纳米薄超分子片和形态相关的管状物体的可行性之后,人们开始努力探索软纳米片的功能潜力。自组装是控制形成纳米尺寸二维物体的主要工具。在这篇文章中,我们分享了我们目前对结构要求的理解,以指导水溶性、带负电荷的低聚物在二维中的自组装。讨论涵盖了一些有希望的应用领域,如弱机械扰动的报告,光收集天线的组装,激发能的转移和预先组织的组装的聚合。在这项工作中提出的系统说明了二维超分子材料作为其共价对应物的互补系统的潜力。
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