Zhai Quan-Guo, Wu Xiao-Yuan, Chen Shu-Mei, Zhao Zhen-Guo, Lu Can-Zhong
State Key Laboratory of Structural Chemistry, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences, Fuzhou, Fujian, 350002, P. R. China.
Inorg Chem. 2007 Jun 11;46(12):5046-58. doi: 10.1021/ic700415w. Epub 2007 May 8.
Eight members of the Ag/1,2,4-triazole/polyoxometalates (POMs) hybrid supramolecular family, namely, [Ag4(dmtrz)4][Mo8O26] (dmtrz=3,5-dimethyl-1,2,4-triazole, 1), [Ag6(3atrz)6][PMo12O40]2.H2O (3atrz=3-amino-1,2,4-triazole, 2), [Ag2(3atrz)2]2[HPMoVI10MoV2O40] (3), [Ag2(dmtrz)2]2[HPMoVI10MoV2O40] (4), [Ag2(trz)2]2[Mo8O26] (trz=1,2,4-triazole, 5), [Ag2(3atrz)2][Ag2(3atrz)2(Mo8O26)] (6), [Ag4(4atrz)2Cl][Ag(Mo8O26)] (4atrz=4-amino-1,2,4-triazole, 7), and [Ag5(trz)4]2[Ag2(Mo8O26)].4H2O (8), were synthesized through hydrothermal reactions of 1,2,4-triazole or its derivatives with appropriate silver salts and molybdates. Crystal structure analysis reveals that the POM-dependent Ag-1,2,4-triazolate units in these hybrid compounds form a novel tetranuclear cluster (1), a unique double calix[3]arene-shaped hexamer (2), zigzag chains (5 and 6), helix chains (3, 4, and 8), and an interesting looped chain (7). A series of hydrogen bonding-based supramolecular assemblies varying among the 0-D+0-D (1 and 2), 0-D+1-D (3 and 4), 1-D+1-D (5 and 7), and 1-D+2-D (6) modes between the organomatic cations and POM anions were observed in these structures. Moreover, the inorganic chain [Ag(Mo8O26)]n3n- in 7 constructed by the building block [Mo8O26]4- linked only via single Ag+ ion is unprecedented. Compound 8 is the first high-dimensional framework constructed from the [Ag2(Mo8O26)]n2n- rod-shaped subunits. These hybrid supramolecular compounds present interesting photochemical properties. The spectroscopic experiments show that they not only are potential semiconductor materials but also have interesting photoluminescence phenomena, including O-->Mo [LMCT] and intraligand [pi-pi*] emissions generated by internal heavy metal effect.
Ag/1,2,4-三唑/多金属氧酸盐(POMs)杂化超分子家族的八个成员,即[Ag4(dmtrz)4][Mo8O26](dmtrz = 3,5-二甲基-1,2,4-三唑,1)、[Ag6(3atrz)6][PMo12O40]2·H2O(3atrz = 3-氨基-1,2,4-三唑,2)、[Ag2(3atrz)2]2[HPMoVI10MoV2O40](3)、[Ag2(dmtrz)2]2[HPMoVI10MoV2O40](4)、[Ag2(trz)2]2[Mo8O26](trz = 1,2,4-三唑,5)、[Ag2(3atrz)2][Ag2(3atrz)2(Mo8O26)](6)、[Ag4(4atrz)2Cl][Ag(Mo8O26)](4atrz = 4-氨基-1,2,4-三唑,7)和[Ag5(trz)4]2[Ag2(Mo8O26)]·4H2O(8),是通过1,2,4-三唑或其衍生物与适当的银盐和钼酸盐的水热反应合成的。晶体结构分析表明,这些杂化化合物中依赖于POM的Ag-1,2,4-三唑单元形成了一种新型四核簇(1)、一种独特的双杯[3]芳烃形六聚体(2)、锯齿链(5和6)、螺旋链(3、4和8)以及一种有趣的环状链(7)。在这些结构中观察到了一系列基于氢键的超分子组装体,其在有机阳离子和POM阴离子之间的0-D + 0-D(1和2)、0-D + 1-D(3和4)、1-D + 1-D(5和7)以及1-D + 2-D(6)模式之间变化。此外,由仅通过单个Ag+离子连接的构建块[Mo8O26]4-构建的7中的无机链[Ag(Mo8O26)]n3n-是前所未有的。化合物8是第一个由[Ag2(Mo8O26)]n2n-棒状亚基构建的高维框架。这些杂化超分子化合物呈现出有趣的光化学性质。光谱实验表明,它们不仅是潜在的半导体材料,而且还具有有趣的光致发光现象,包括O→Mo [LMCT]和由内部重金属效应产生的配体内[π-π*]发射。