Cu2(HL1)2(H2O)2 (1), [Mn2(HL1)2(H2O)4]·2H2O (2), [Cu5(HL2)2(SO4)2(OH)2(H2O)2]·5H2O}n (3), [Cu(HL2)]n (4), Cu3(L3)2(OH)2(H2O)2 (5) based on three flexible ligands [bis-(1H-tetrazol-5-ylmethyl)-amine (H3L1), bis-(1H-tetrazol-5-ylethyl)-amine (H3L2) and 1,5-bis(5-tetrazolo)-3-thiapentane (H2L3)] have been synthesized and structurally characterized, which are in the wide range of 0-D to infinite 2-D network
摘要五个新的Cu(II)/ Mn(II)络合物Cu2(HL1)2(
H2O)2(1),[Mn2(HL1)2( )4]·2 (2),[Cu5(H
L2)2 (SO4)2(OH)2( )2]·5 } n(3),[Cu(H
L2)] n(4),Cu3(L3)2(OH)2( )2(5)基于三个柔性
配体[双-(
1H-四唑-5-基甲基)-胺(H3L1),双-(
1H-四唑-5-基乙基)-胺(H3
L2)和1,5-双(5-
四唑)-3 -
噻吩烷(H2L3)]的合成和结构表征,其范围从0-D到无限2D网络。双核配合物1和2可以分别通过氢键相互作用进一步组装成3-D超分子构架,从而产生带有Schlafli符号412·63}和336·448·57的拓扑pcu和bcu-x网。 }。配合物3和4分别具有无限的一维链和二维网络。4的2-D框架和5的2-D超分子网络都可以简化为四连接的44·62}拓扑