TY - JOUR
T1 - 3D H-bonding networks self-assembly from pyridinium derivatives and bis(maleonitriledithiolato)zincate(II)
AU - Ren, Xiaoming
AU - Xie, Jingli
AU - Chen, Youcun
AU - Kremer, Reinhard Karl
PY - 2003/11/12
Y1 - 2003/11/12
N2 - The two ion-pair complexes, [pyH]2[Zn(mnt)2] (1) and [4,4′-bipyH2]-[Zn(mnt)2] (2), were synthesized, where mnt2- denotes maleonitriledithiolate, and [pyH]+, [4,4′-bipyH2]2+ represent pyridinium and diprotonated 4,4′-bipyridinium, respectively. Their single crystal structures show that there are strong bifurcated H-bonding interactions between the cations of the pyridinium derivative and the [Zn(mnt)2] 2- anions in both 1 and 2. The bifurcated H-bonding interactions between the N-H of the pyridiniums and the CN groups of the mnt2- ligands give rise to a 2D layered H-bonding network, the adjacent layers come together in such way as mutual embrace to give a tight pack, thus 2D hydrogen-bonding sheets further develop into 3D H-bonding networks through weak C-H⋯S and π⋯π stacking interactions in 1. As for 2, the cations and anions connect into several types of H-bonding macrorings ([2 + 2], [3 + 3] and [4 + 4]), these H-bonding macrorings fuse to extend into 2D layered structure, the interpenetration between [3 + 3] and [4 + 4] type H-bonding macrorings in the adjacent layers give further rise to novel 3D extended H-bonding networks, in which there are clearly parallel stacks of cations and the chelate rings of anions.
AB - The two ion-pair complexes, [pyH]2[Zn(mnt)2] (1) and [4,4′-bipyH2]-[Zn(mnt)2] (2), were synthesized, where mnt2- denotes maleonitriledithiolate, and [pyH]+, [4,4′-bipyH2]2+ represent pyridinium and diprotonated 4,4′-bipyridinium, respectively. Their single crystal structures show that there are strong bifurcated H-bonding interactions between the cations of the pyridinium derivative and the [Zn(mnt)2] 2- anions in both 1 and 2. The bifurcated H-bonding interactions between the N-H of the pyridiniums and the CN groups of the mnt2- ligands give rise to a 2D layered H-bonding network, the adjacent layers come together in such way as mutual embrace to give a tight pack, thus 2D hydrogen-bonding sheets further develop into 3D H-bonding networks through weak C-H⋯S and π⋯π stacking interactions in 1. As for 2, the cations and anions connect into several types of H-bonding macrorings ([2 + 2], [3 + 3] and [4 + 4]), these H-bonding macrorings fuse to extend into 2D layered structure, the interpenetration between [3 + 3] and [4 + 4] type H-bonding macrorings in the adjacent layers give further rise to novel 3D extended H-bonding networks, in which there are clearly parallel stacks of cations and the chelate rings of anions.
KW - Bis(maleonitriledithiolato)zincate(II)
KW - Crystal structure
KW - Hydrogen bonding
KW - Pyridinium derivatives
UR - http://www.scopus.com/inward/record.url?scp=0142245640&partnerID=8YFLogxK
U2 - 10.1016/j.molstruc.2003.08.020
DO - 10.1016/j.molstruc.2003.08.020
M3 - 文章
AN - SCOPUS:0142245640
SN - 0022-2860
VL - 660
SP - 139
EP - 146
JO - Journal of Molecular Structure
JF - Journal of Molecular Structure
IS - 1-3
ER -