Ariga Katsuhiko, Shrestha Lok Kumar
International Center for Materials Nanoarchitectonics (WPI-MANA), National Institute for Materials Science (NIMS), 1-1 Namiki, Tsukuba 305-0044, Japan.
Graduate School of Frontier Sciences, The University of Tokyo, 5-1-5 Kashiwanoha, Kashiwa, Chiba 277-8561, Japan.
Materials (Basel). 2020 May 15;13(10):2280. doi: 10.3390/ma13102280.
This short review article introduces several examples of self-assembly-based structural formation and shape-shifting using very simple molecular units, fullerenes (C, C, and their derivatives), as fullerene nanoarchitectonics. Fullerene molecules are suitable units for the basic science of self-assembly because they are simple zero-dimensional objects with only a single elemental component, carbon, without any charged or interactive functional groups. In this review article, self-assembly of fullerene molecules and their shape-shifting are introduced as fullerene nanoarchitectonics. An outline and a background of fullerene nanoarchitectonics are first described, followed by various demonstrations, including fabrication of various fullerene nanostructures, such as rods on the cube, holes in the cube, interior channels in the cube, and fullerene micro-horns, and also a demonstration of a new concept, supramolecular differentiation.
这篇简短的综述文章介绍了几个基于自组装的结构形成和形状转变的例子,使用非常简单的分子单元——富勒烯(C、C及其衍生物),作为富勒烯纳米建筑学。富勒烯分子是自组装基础科学的合适单元,因为它们是简单的零维物体,只有单一的元素成分碳,没有任何带电或相互作用的官能团。在这篇综述文章中,富勒烯分子的自组装及其形状转变被作为富勒烯纳米建筑学进行介绍。首先描述了富勒烯纳米建筑学的概述和背景,随后是各种演示,包括各种富勒烯纳米结构的制备,如立方体上的棒、立方体中的孔、立方体内部通道以及富勒烯微角,还展示了一个新概念——超分子分化。