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Hydrothermal synthesis and structures of the novel niobium phosphates [NbOF(PO4)](N2C5H7) and [(Nb0.9V1.1)O2(PO4)2(H2PO4)](N2C2H10)
Authors:Xiqu Wang  Lumei Liu  Allan J Jacobson
Institution:Department of Chemistry and Center for Materials Chemistry, University of Houston, Houston, TX 77204-5003, USA
Abstract:Two new niobium phosphates were synthesized and their crystal structures determined from single-crystal X-ray data. NbOF(PO4)](N2C5H7) (1) (monoclinic, space group P21/c, a=11.442(1), b=9.1983(7), c=9.1696(8) Å, β=109.94(1)°) has a layered structure and is the first example of a negatively charged NbOF(PO4) layer analogous to the MO(H2O)PO4 (M=V, Nb) layers. The layer charge is compensated by interlayer 4-aminopyridnium cations that adopt an unusual arrangement as a consequence of H-bonding and π-π interactions. The interlayer aminopyridnium cations can be exchanged with alkylammonium ions which form bilayers inclined at ∼65° to the NbOF(PO4) layer. (Nb0.9V1.1)O2(PO4)2(H2PO4)] (N2C2H10) (2) (orthorhombic, space group Pbca, a=15.821(2),b=9.0295(9),c=18.301(2) Å) has a disordered three-dimensional structure based on NbO(PO4) layers cross-linked by phosphate tetrahedra, and has a similar structure to the known vanadium analog V2O2(PO4)2(H2PO4)] (N2C2H10).
Keywords:Niobium phosphate  4-aminopyridine  Hydrothermal synthesis  Crystal structure  Intercalation compound  Layered structure
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