首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Novel borothermal process for the synthesis of nanocrystalline oxides and borides of niobium
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Novel borothermal process for the synthesis of nanocrystalline oxides and borides of niobium

机译:新型硼热法合成铌的纳米晶体氧化物和硼化物

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摘要

A new process has been developed for the synthesis of nanocrystalline niobium oxide and niobium diboride using an amorphous niobium precursor obtained via the solvothermal route. On varying the ratio of niobium precursor to boron and the reaction conditions, pure phases of nanostructured niobium oxides (Nb_2O_5, NbO_2), niobium diboride (NbB _2) and core-shell nanostructures of NbB_2@Nb _2O_5 could be obtained at normal pressure and low temperature of 1300 °C compared to a temperature of 1650 °C normally used. The above borothermal process involves the in situ generation of B _2O_2 to yield either oxide or diboride. The niobium oxides and borides have been characterized in detail by XRD, HRTEM and EDX studies. The core-shell structure has been investigated by XPS depth profiling, EFTEM and EELS (especially to characterize the presence of boron and the shell thickness). The niobium diboride nanorods (with high aspect ratio) show a superconducting transition with the T_c of 6.4 K. In the core-shell of NbB 2@Nb_2O_5, the superconductivity of NbB _2 is masked by the niobium oxide shell and hence no superconductivity was observed. The above methodology has the benefits of realizing both oxides and borides of niobium in nanocrystalline form, in high purity and at much lower temperatures.
机译:已经开发出一种新方法,用于使用通过溶剂热途径获得的非晶态铌前驱体来合成纳米晶氧化铌和二硼化铌。通过改变铌前驱体与硼的比例和反应条件,可以在常压和低压下获得纯相的纳米结构铌氧化物(Nb_2O_5,NbO_2),二硼化铌(NbB _2)和核-壳纳米结构NbB_2 @ Nb_2O_5。 1300°C的温度与通常使用的1650°C的温度相比。上述硼热法涉及原位生成B _2O_2以产生氧化物或二硼化物。 XRD,HRTEM和EDX研究已详细表征了铌氧化物和硼化物。已经通过XPS深度剖析,EFTEM和EELS研究了核-壳结构(特别是表征了硼的存在和壳的厚度)。高纵横比二硼化铌纳米棒表现出超导转变,T_c为6.4K。在NbB 2 @ Nb_2O_5的核-壳中,NbB _2的超导性被氧化铌壳所掩盖,因此未观察到超导性。上述方法的优点在于可以以高纯度和低得多的温度实现纳米晶形式的铌的氧化物和硼化物。

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