Aminopolycarboxylate Bismuth(III)-Based Heterometallic Compounds as Single-Source Molecular Precursors for Bi4V2O11 and Bi2CuO4 Mixed Oxides

作者:Bulimestru Ion; Shova Sergiu; Popa Nelea; Roussel Pascal; Capet Frederic; Vannier Rose Noelle; Djelal Nora; Burylo Laurence; Wignacourt Jean Pierre; Gulea Aurelian; Whitmire Kenton H*
来源:Chemistry of Materials, 2014, 26(21): 6092-6103.
DOI:10.1021/cm502009y

摘要

Five heterometallic complexes of general formula M(L)(y){Bi(APC)}(2)nH(2)O [M = VO2+, Cu2+; APC = aminopolycarboxylate, in this work ethylenediaminetetraacetate (edta4) or 1,2- cyclohexanediaminetetraacetate (cdta(4)-); L = 2,2%26apos;-bipyridine; y = 0, 1, or 2; n = 516] have been synthesized. The crystal structures of four of them have been determined from single-crystal X-ray diffraction data. The compounds have been probed as single-source molecular precursors for Bi4V2O11 and Bi2CuO4 mixed oxides. Temperature-controlled X-ray powder diffraction was used to monitor the phase transitions during the thermolysis of the precursors. The influence of the ligand type and intermetallic distances in the precursors, heating rate, and the atmosphere have been investigated. The best candidates to yield pure Bi4V2O11 and Bi2CuO4 are complexes with separations between heterometals of 4 containing 2930% of carbon. The optimal working conditions under which the precursors can be smoothly converted to the corresponding heterometallic oxides are heating at low rates under air flow. The precursors containing 2930% of carbon yield smaller grains and more homogeneous morphology of the residues than the analogues with lower or higher carbon amount. The advantage of the APC-based molecular precursor method is compared to previously reported procedures to produce bimetallic oxides.

  • 出版日期2014-11-11