Three novel tetranuclear vanadium(III) or (IV) complexes bridged by diphenyl phosphate or phosphate were prepared and their structures characterized by X-ray crystallography. The novel complexes are [{V(III)(2)(mu-hpnb-pda)}(2){mu-(C6H5O)(2)PO2}(2)(mu-O)(2)]center dot 6CH(3)OH (1), [{V(III)(2)-(mu-tphpn)(mu-eta(3)-HPO4)}(2)(mu-eta(4)-PO4)](ClO4)(3)center dot 4.5H(2)O (2), and [{(V(IV)O)(2)(mu-tphpn)}(2)(mu-eta(4)-PO4)](ClO4)(3)center dot H2O (3), where hpnbpda and tphpn are alkoxo-bridging dinucleating ligands. H(3)hpnbpda represents 2-hydroxypropane-1,3-diamino-N,N'-bis(2-pyridylmethyl)-N,N'-diacetic acid, and Htphpn represents N,N,N'N'-tetrakis(2-pyridylmethyl)-2-hydroxy-1,3-propanediamine. A dinuclear vanadium(IV) complex without a phosphate bridge, [(VO)(2)(mu-tphpn)(H2O)(2)](ClO4)(3)center dot 2H(2)O (4), was also prepared and structurally characterized for comparison. The vanadium(III) center in 1 adopts a hexacoordinate structure while that in 2 adapts a heptacoordinate structure. In 1, the two dinuclear vanadium(III) units bridged by the alkoxo group of hpnbpda are further linked by two diphenylphosphato and two oxo groups, resulting in a dimer-of-dimers. In 2, the two vanadium(III) units bridged by tphpn are further bridged by three phosphate ions with two different coordination modes. Complex 2 is oxidized in aerobic solution to yield complex 3, in which two of the three phosphate groups in 2 are substituted by oxo groups.