Lee Jiyoung, Choi Jae Sun, Jeong Nak Cheon, Choe Wonyoung
Department of Chemistry , Ulsan National Institute of Science and Technology , Ulsan 44919 , Korea . Email:
Department of Emerging Materials Science , Daegu Gyeongbuk Institute of Science and Technology , Daegu 42988 , Korea.
Chem Sci. 2019 May 14;10(24):6157-6161. doi: 10.1039/c9sc00513g. eCollection 2019 Jun 28.
Shape control of metal-organic materials on the meso- and macroscale has been an important theme due to emerging properties. Particularly, chemical etching has been useful to create various forms such as core-shells and hollow crystals in metal-organic frameworks. Here we present a unique chemical etching strategy to create trigonal patterned surfaces in metal-organic frameworks. The mechanism suggests that metal-organic polyhedron subunits serve as meta-atoms, playing a crucial role in the formation of trigons on the surface. Such a patterned surface in porous solids can be utilized in meta-surface applications in the foreseeable future.
由于新出现的特性,金属有机材料在介观和宏观尺度上的形状控制一直是一个重要的主题。特别是,化学蚀刻对于在金属有机框架中创建各种形式(如核壳结构和中空晶体)很有用。在这里,我们提出了一种独特的化学蚀刻策略,以在金属有机框架中创建三角形图案化表面。该机制表明,金属有机多面体亚基充当元原子,在表面三角形的形成中起关键作用。在可预见的未来,这种多孔固体中的图案化表面可用于超表面应用。