Herein,we demonstrate a very useful strategy to construct cage-based metal-organic frameworks(MOFs)with third-order nonlinear-optical properties.More specifically,by employing the Zr_(4)L_(6)(L=embonate)cages to assem...Herein,we demonstrate a very useful strategy to construct cage-based metal-organic frameworks(MOFs)with third-order nonlinear-optical properties.More specifically,by employing the Zr_(4)L_(6)(L=embonate)cages to assembly with N-contained ligands and Mn^(2+)/Zn^(2+) ions,four Zr_(4)L_(6)-cage-based MOFs have been synthesized and structurally characterized.Among them,a 3D framework with strong aromatic π−πstacking force exhibits a good optical limiting effect.展开更多
基金supported by the National Natural Science Foundation of China(21922111,21871050 and 21975288)the Natural Science Foundation of Fujian Province(2017J06009).
文摘Herein,we demonstrate a very useful strategy to construct cage-based metal-organic frameworks(MOFs)with third-order nonlinear-optical properties.More specifically,by employing the Zr_(4)L_(6)(L=embonate)cages to assembly with N-contained ligands and Mn^(2+)/Zn^(2+) ions,four Zr_(4)L_(6)-cage-based MOFs have been synthesized and structurally characterized.Among them,a 3D framework with strong aromatic π−πstacking force exhibits a good optical limiting effect.