文摘
The reactions of diphosphine ligands and isoquinoline (i-C9H7N) with Ag salts in the mixed solvent of methanol (MeOH) and dichloromethane (CH2Cl2) generate the complexes [Ag2(dppm)2(NO2)2]·(i-C9H7N)2 (class="boldFont">1), [Ag2(dppm)2(i-C9H7N)2(BF4)](BF4) (class="boldFont">2), {[Ag(dppe)(i-C9H7N)2](CF3SO3)·(i-C9H7N)}n (class="boldFont">3), {[Ag(dppb)(i-C9H7N)2](BF4)2·(i-C9H7N)0.5}n (class="boldFont">4) and {[Ag(dppb)(i-C9H7N)(CF3SO3)]·(i-C9H7N)}n (class="boldFont">5). These complexes were all characterized by IR, elemental analysis, X-ray diffraction, luminescence, 31P and 1H NMR spectroscopy. Complexes class="boldFont">1 and class="boldFont">2 have dinuclear structures, while complexes class="boldFont">3, class="boldFont">4 and class="boldFont">5 have 1D infinite zigzag chain structures. Complexes class="boldFont">1 and class="boldFont">2 are metal clusters in which there exist Ag⋯Ag metal bonds, whilst in compounds class="boldFont">3, class="boldFont">4 and class="boldFont">5, two silver atoms are bridged by the diphosphine ligands to form the 1D infinite zigzag chains. Complexes class="boldFont">3 and class="boldFont">5 are 2D topologically promising architectures and complex class="boldFont">4 is a 3D topologically promising architecture. In addition, complexes class="boldFont">1–class="boldFont">5 exhibit interesting fluorescence in the solid state at room temperature. At the same time, we also studied the terahertz spectra of the complexes, which show more accurate characteristics of each group of complex.