小型商用车
化学
可控性
金属有机骨架
金属
分子
结晶学
纳米技术
材料科学
有机化学
应用数学
数学
吸附
作者
Zhiyong Lu,Liting Du,Ruyong Guo,Guangbao Zhang,Jingui Duan,Jianfeng Zhang,Lin Han,Junfeng Bai,Joseph T. Hupp
摘要
Metal-organic polyhedral frameworks are attractive in gas storage and separation due to large voids with windows that can serve as traps for guest molecules. Introducing multivariant/multicomponent functionalities in them are ways of improving performances for certain targets. The high compatibility of organic linkers can generate multivariant MOFs, but by far, the diversity of secondary building units (SBUs) in a single metal-organic framework is still limited (no more than two in most cases). Here we report a new double-walled Zn36@Zn104 metal-organic polyhedral framework (HHU-8) with five types of topologically distinct SBUs and its isoreticular evolution to the Zn36@Zn136 counterpart (HHU-8s). Both MOFs are the first to be constructed with such high numbers of topologically distinct SBUs as well as topologically distinct nodes, and their formation and evolution provide new insight into SBU's controllability.
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