Abstract

To systematically explore the influence of pyridazine ligands and aromatic polycarboxylate on the existence of argentophilicity, four inorganic–organic hybrid Ag(I) complexes were obtained by one-pot ultrasonic reaction. Four complexes were named [Ag6(pdz)2(btc)2]n (1), [Ag2(pdz)(npt)]n (2), [Ag2(pdz)(pma)1/2]n (3), and [Ag2(pdz)(npa)·H2O]n (4) (pdz=pyridazine, H3btc=1,3,5-benzene tricarboxylic, H2npt=3-nitrophthalic acid, H4pma=pyromellitic acid, H2npa=1,4-naphthalenedicarboxylic acid). Structural analyses reveal that complexes 1–4 display diverse 2D or 3D frameworks, which all of the N-donor pdz ligands exhibit the same coordination mode but the distances of the silver atoms which link to the pdz ligands are different to each other. Complex 1 shows Ag6 clusters and the cluster is comprised by two distorted tetrahedron silver units. And the clusters are shared by two silver ions to form 1D silver chains. Complex 2 features 1D silver chains which are formed by the Ag4 units and the four Ag(I) ions are in the vertices of parallelogram. Complex 3 is an interpenetrating architecture with the pdz ligands alternately repeating up and down in ac plane. The structure of complex 4 is a 2D layer structure which the pdz and npt ligands alternately repeat along a axis. Moreover, complexes 1–4 indicate different photoluminescence behaviors in the solid state.

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