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首页> 外文期刊>Bulletin of Materials Science >Synthesis of nanocrystalline materials through reverse micelles: A versatile methodology for synthesis of complex metal oxides
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Synthesis of nanocrystalline materials through reverse micelles: A versatile methodology for synthesis of complex metal oxides

机译:通过反胶束合成纳米晶体材料:复杂金属氧化物合成的通用方法

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摘要

We have been successful in obtaining monophasic nanosized oxides with varying chemical compositions using the reverse micellar method. Here we describe our methodology to obtain important metal oxides like ceria, zirconia and zinc oxide. The oxalate of cerium, zirconium and zinc were synthesized using the reverse micellar route. While nanorods of zinc oxalate with dimension, 120 nm in diameter and 600 nm in length, could be obtained, whereas spherical particles of size, 4-6 nm, were obtained for cerium oxalate. These precursors were heated to form their respective oxides. Mixture of nanorods and nanoparticles of cerium oxide was obtained. ZrO_2 nanoparticles of 3-4 nm size were obtained by the thermal decomposition of zirconium oxalate precursor. ZnO nanoparticles (55 nm) were obtained by the decomposition of zinc oxalate nanorods. Photoluminescence (PL) studies at 20 K shows the presence of three peaks corresponding to free excitonic emission, free to bound and donor-acceptor transitions. We also synthesized nanoparticles corresponding to Ba_(1-x)Pb_xZrO_3 using the reverse micellar route. The dielectric constant and loss were stable with frequency and temperature for the solid solution.
机译:我们已经成功地使用反胶束方法获得了具有不同化学组成的单相纳米氧化物。在这里,我们描述了获得重要的金属氧化物(例如二氧化铈,氧化锆和氧化锌)的方法。铈,锆和锌的草酸盐是利用反胶束路线合成的。虽然可以获得草酸锌纳米棒,其直径为120nm,长度为600nm,而草酸铈的球形颗粒为4-6nm。加热这些前体以形成它们各自的氧化物。获得了纳米棒和氧化铈纳米颗粒的混合物。通过草酸锆前体的热分解获得3-4nm尺寸的ZrO_2纳米颗粒。通过草酸锌纳米棒的分解获得了ZnO纳米颗粒(55 nm)。在20 K下的光致发光(PL)研究表明存在三个峰,分别对应于自由激子​​发射,自由键合和供体-受体跃迁。我们还使用反向胶束路线合成了与Ba_(1-x)Pb_xZrO_3对应的纳米粒子。固溶体的介电常数和损耗随频率和温度稳定。

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