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Synthesis of classes of ternary metal oxide nanostructures

机译:一类三元金属氧化物纳米结构的合成

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Nanoscale structures, such as nanoparticles, nanorods, nanowires, nanocubes, and nanotubes, have attracted extensive synthetic attention as a result of their novel size-dependent properties. Ideally, the net result of nanoscale synthesis is the production of structures that achieve monodispersity, stability, and crystallinity with a predictable morphology. Many of the synthetic methods used to attain these goals have been based on principles derived from semiconductor technology, solid state chemistry, and molecular inorganic cluster chemistry. We describe a number of advances that have been made in the reproducible synthesis of various ternary oxide nanomaterials, including alkaline earth metal titanates, alkali metal titanates, bismuth ferrites, ABO(4)-type oxides, as well as miscellaneous classes of ternary metal oxides.
机译:纳米级结构,例如纳米粒子,纳米棒,纳米线,纳米立方体和纳米管,由于其新颖的尺寸依赖性而吸引了广泛的合成关注。理想情况下,纳米级合成的最终结果是产生具有可预测形态的单分散性,稳定性和结晶性的结构。用于实现这些目标的许多合成方法都是基于源自半导体技术,固态化学和分子无机簇化学的原理。我们描述了可重复合成的各种三元氧化物纳米材料,包括碱土金属钛酸盐,碱金属钛酸盐,铋铁氧体,ABO(4)型氧化物以及杂类三元金属氧化物的可再生合成方面取得的许多进展。 。

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