Splicing Them Together: Construction of Polyoxovanadate–Organic Polyhedra‐Based Pyrgoscages and Catenanes
Abstract
Abstract Following the construction schemes of pyrgoscages and catenanes, attempts to splice polyoxovanadate‐based metal–organic polyhedra (POV‐MOPs) together have been carried out in this work. To meet the requirements of POV‐MOPs with varied sizes, synthetic strategies including reconstruction of original vertex, introduction of exogenous vertex, and initiative of polyhedral interlock have been developed, which successfully integrated a pair of tetrahedral monomers into an hourglass‐shaped dimer. On top of this, several structuring principles, such as anisotropic enhancement, electrostatic potential reduction, and sufficient intramolecular support, can be drawn from here and popularized to the related MOP systems. Thanks to the advent of such splicing techniques managed by both covalent and non‐covalent interactions, the close communication of POV‐MOPs has afforded not only the unprecedented structural archetypes, but the unique behaviors for NH 3 adsorption as well.
Article Details
Authors (6)
Ke‐Wei Tong
College of Chemistry and Chemical Engineering, Advanced Catalytic Engineering Research Center of the Ministry of Education Hunan University Changsha 410082 P.R. China
Yan‐Hu Wang
College of Chemistry and Chemical Engineering, Advanced Catalytic Engineering Research Center of the Ministry of Education Hunan University Changsha 410082 P.R. China
Jing Du
Chao‐Qin Chen
College of Chemistry and Chemical Engineering, Advanced Catalytic Engineering Research Center of the Ministry of Education Hunan University Changsha 410082 P.R. China
Ya‐Qian Lan
Guangdong Provincial Key Laboratory of Carbon Dioxide Resource Utilization School of Chemistry South China Normal University Guangzhou P. R. China
Peng Yang