From Coordination Cages to a Stable Crystalline Porous Hydrogen-Bonded Framework.
Zhanfeng JuGuoliang LiuYu-Sheng ChenDa-Qiang YuanBanglin ChenPublished in: Chemistry (Weinheim an der Bergstrasse, Germany) (2017)
A stable framework has been constructed through multiple charge-assisted H-bonds between cationic coordination cages and chloride ions. The framework maintained its original structure upon desolvation, which has been established by single-crystal structure analysis. This is the first fully characterized stable porous framework based on coordination cages after desolvation, with a moderately high Brunauer-Emmett-Teller (BET) surface area of 1201 m2 g-1 . This work will not only give a light to construct stable porous frameworks based on coordination cages and thus broaden their applications, but will also provide a new avenue to the assembly of other porous materials such as porous organic cages and hydrogen-bonded organic frameworks (HOFs) through non covalent bonds.