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

机译:氨基多羧酸铋(III)基杂金属化合物作为Bi4V2O11和Bi2CuO4混合氧化物的单源分子前体

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摘要

Five heterometallic complexes of general formula M(L)y{Bi(APC)}2·nH2O [M = VO2+, Cu2+; APC = aminopolycarboxylate, in this work ethylenediaminetetraacetate (edta4–) or 1,2 cyclohexanediaminetetraacetate (cdta4–); L = 2,2′-bipyridine; y = 0, 1, or 2; n = 5–16] 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 Å containing ∼29–30% 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 ∼29–30% 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.
机译:五个通式为M(L)y {Bi(APC)} 2·nH2O的杂金属配合物[M = VO2 +,Cu2 +; APC =氨基聚羧酸盐,在此工作中为乙二胺四乙酸盐(edta4-)或1,2环己二胺四乙酸盐(cdta4-–); L = 2,2'-联吡啶; y = 0、1或2; n = 5-16]已合成。从单晶X射线衍射数据已经确定了它们中的四个的晶体结构。已将该化合物作为Bi4V2O11和Bi2CuO4混合氧化物的单源分子前体进行了研究。温度控制的X射线粉末衍射用于监测前体热解过程中的相变。研究了前体中配体类型和金属间距离,加热速率和气氛的影响。产生纯Bi4V2O11和Bi2CuO4的最佳候选物是配合物,其中〜4Å的杂金属之间有约29–30%的碳。前体可以顺利转化为相应的杂金属氧化物的最佳工作条件是在气流下低速加热。与含碳量较低或较高的类似物相比,含碳量约29–30%的前体产生的晶粒更细,残留物的形态更均一。将基于APC的分子前体方法的优势与先前报道的生产双金属氧化物的方法进行了比较。

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