Three inorganic−organic hybrid compounds with the formula CuL(VO 2 )(PO 4 ), L = 4,4‘- bipy, 1,10-phen, and 2,2‘-bipy, were hydrothermally synthesized at 160 °C for 120 h and characterized by single-crystal X-ray diffraction. The use of different bidentate organodiamine ligands in initial reaction systems gave rise to the variety in the structures of the products: Cu(4,4‘-bipy)(VO 2 )(PO 4 ) ( 1 ) and Cu(1,10-phen)(VO 2 )(PO 4 ) ( 2 ) crystallize in a monoclinic system with space group C 2/ c, a = 21.952(4) Å, b = 8.0805(13) Å, c = 15.918(2) Å, β = 110.689(4)°, and V = 2641.5(7) Å 3, and a = 20.4557(12) Å, b = 11.6231(7) Å, c = 14.6422(8) Å, β = 127.5520(10)°, and V = 2760.0(3) Å 3, respectively. Cu(2,2‘- bipy)(VO 2 )(PO 4 ) ( 3 ) crystallizes in a triclinic system with space group P 1̄, a = 5.561(5) Å, b = 10.271(9) Å, c = 11.780(9) Å, α = 74.31(3)°, β = 79.98(3)°, γ = 85.74(3)°, and V = 637.6(9) Å 3 . The structures of 1 and 2 possess the same {(VO 2 )(PO 4 )} 2 four-membered rings, whereas the structure of 3 contains {(VO 2 )(PO 4 )} ∞ infinite chains. In terms of the organic parts, the {Cu(4,4‘-bipy)} ∞ linear chains connect the {(VO 2 )(PO 4 )} 2 four-membered rings to build up a 3D framework in 1, whereas the Cu(1,10-phen) 2+ and Cu(2,2‘-bipy) 2+ fragments link with the {(VO 2 )(PO 4 )} 2 four-membered rings and {(VO 2 )(PO 4 )} ∞ infinite chains to give two 1D structures of 2 and 3, respectively. Their thermal stabilities were investigated.
No takes yet. Share an insight, caveat, or question.
Shi et al. (2000) studied this question.
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: