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pH and Ligand Dependent Assembly of Well鈥揇awson Arsenomolybdate Capped Architectures
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Five Well鈥揇awson-type arsenomolybdates, formulated as [Cu(2,2鈥?bpy)<sub>2sub>][{Cu(2,2鈥?bpy)}<sub>3sub>{As<sub>2sub><sup>Vsup>Mo<sub>2sub><sup>Vsup>Mo<sub>16sub><sup>VIsup>O<sub>62sub>}]路4H<sub>2sub>O (1), [H<sub>2sub>(4,4鈥?bpy)]<sub>2.5sub>[As<sup>IIIsup>(As<sub>2sub><sup>Vsup>Mo<sub>2sub><sup>Vsup>Mo<sub>16sub><sup>VIsup>O<sub>62sub>)]路5H<sub>2sub>O (2), (pyr)(imi)(Himi)<sub>3sub>[As<sub>2sub><sup>IIIsup>(As<sub>2sub><sup>Vsup>Mo<sub>3sub><sup>Vsup>Mo<sub>15sub><sup>VIsup>O<sub>62sub>)]路3H<sub>2sub>O (3), [As<sub>3sub><sup>IIIsup>(As<sub>2sub><sup>Vsup>Mo<sub>3sub><sup>Vsup>Mo<sub>15sub><sup>VIsup>O<sub>62sub>)]路4H<sub>2sub>O (4), and (H<sub>2sub>btp)<sub>3sub>[As<sub>2sub><sup>Vsup>Mo<sub>18sub><sup>VIsup>O<sub>62sub>]路6H<sub>2sub>O (5) (bpy = bipyridine, pyr = pyrazine, imi = imidazole, btp = 1,5-bis(triazol)pentane), have been hydrothermally synthesized and structurally characterized by the elemental analysis, TG, IR, UV鈥搗is鈥揘IR, XPS, XRD, and single-crystal X-ray diffraction. The structural analysis indicates that compounds 1鈥?b>4 contain rare reduced Dawson {As<sub>2sub>Mo<sub>18sub>O<sub>62sub>} (abbreviated as {As<sub>2sub>Mo<sub>18sub>}) anions as parent cluster unit, which are capped by a certain number of Cu(II) or As(III) species on different coordination positions via altering pH values and organic ligand of the reaction system. Compounds 1 and 2 are asymmetric tricopper and monoarsenate(III) capped assemble by three {Cu(bpy)}<sup>2+sup> and a {AsO<sub>3sub>} fragments, respectively. Compounds 3 and 4 are symmetric biarsenate(III) and triarsenate(III) capped cluster by four and six half occupancy {AsO<sub>3sub>} units, respectively. Compound 5 is uncapped {As<sub>2sub>Mo<sub>18sub>} structures. Compounds 1鈥?b>4 represent infrequent Dawson arsenomolybdate capped architectures, especially 2鈥?b>4, as arsenate(III) capped Dawson-type assemblies are observed for the first time. Compounds 1鈥?b>5 display good electrocatalytic activity on reduction of nitrite. Compounds 1, 2, 3, and 5 exhibit fluorescent properties in the solid state at room temperature. In addition, magnetic properties of 1鈥?b>4 have been investigated in detail.

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