Framework Engineering by Anions and Porous Functionalities of Cu(II)/4,4‘-bpy Coordination Polymers
Kyoto University · Tokyo Metropolitan University
Abstract
A combination of framework-builder (Cu(II) ion and 4,4'-bipyridine (4,4'-bpy) ligand) and framework-regulator (AF(6) type anions; A = Si, Ge, and P) provides a series of novel porous coordination polymers. The highly porous coordination polymers ([Cu(AF(6))(4,4'-bpy)(2)].8H(2)O)(n)(A = Si (1a.8H(2)O), Ge (2a.8H(2)O)) afford robust 3-dimensional (3-D), microporous networks (3-D Regular Grid) by using AF(6)(2-) anions. The channel size of these complexes is ca. 8 x 8 A(2) along the c-axis and 6 x 2 A(2) along the a- or b-axes. When compounds 1a.8H(2)O or 2a.8H(2)O were immersed in water, a conversion of 3-D networks (1a.8H(2)O or 2a.8H(2)O) to interpenetrated networks ([Cu(4,4'-bpy)(2)(H(2)O)(2)].AF(6))(n)(A =…
Citation impact
- FWCI
- 30.68
- Percentile
- 100%
- References
- 56
Authors
7- SNShin‐ichiro NoroCorresponding
Kyoto University, Tokyo Metropolitan University
- RKRyo Kitaura
Tokyo Metropolitan University, Kyoto University
- MKMitsuru Kondo
Kyoto University, Tokyo Metropolitan University
- SKSusumu Kitagawa
Tokyo Metropolitan University, Kyoto University
- TITomohiko Ishii
Tokyo Metropolitan University, Kyoto University
Topics & keywords
- Chemistry
- Microporous material
- Crystallography
- Coordination polymer
- Ligand (biochemistry)
- Polymer
- Metal-organic framework
- Ion exchange
- Clean water and sanitation