Yoo Sungjae, Kim Jeongwon, Choi Sungwoo, Park Doojae, Park Sungho
Department of Chemistry, Sungkyunkwan University, Suwon, 440-746, South Korea.
Department of Applied Optics and Physics, Hallym University, Chuncheon, 24252, South Korea.
Nat Commun. 2019 Dec 19;10(1):5789. doi: 10.1038/s41467-019-13738-6.
The synthesis of highly complex two-dimensional (2D) metal nanoframes remains a great challenge. Synthetic strategies for preparing 2D metal nanoframes are few, and rational and systematic synthetic pathways to more complicated architectures have not yet been reported. Herein, we demonstrate a stepwise synthetic strategy for complex 2D metal nanoframes with a high degree of intricacy; the strategy leads to a variety of shapes, including rings, triangles, hexagons, and tripods with tailorable single or double frames in a single entity. These nanoframes of high homogeneity could be obtained through selective combination of four different chemical toolkits consisting of selective etching and deposition on certain facets, and concentric and/or eccentric regrowth by controlling the mismatches of lattice constants of metals. The resulting nanoframes were highly homogeneous in size and shape and had van der Waals interactions that maximized rim-to-rim contact, allowing them to uniquely self-assemble into large-area superstructures.
高度复杂的二维金属纳米框架的合成仍然是一个巨大的挑战。制备二维金属纳米框架的合成策略很少,尚未报道用于构建更复杂结构的合理且系统的合成途径。在此,我们展示了一种用于高度复杂的二维金属纳米框架的逐步合成策略;该策略可产生多种形状,包括环、三角形、六边形以及在单个实体中具有可定制单框架或双框架的三脚架。通过选择性蚀刻、特定晶面沉积以及通过控制金属晶格常数失配进行同心和/或偏心再生长这四种不同化学工具包的选择性组合,可以获得这些高度均匀的纳米框架。所得的纳米框架在尺寸和形状上高度均匀,并且具有范德华相互作用,使边缘到边缘的接触最大化,从而使其能够独特地自组装成大面积的超结构。