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首页> 外文期刊>Nanoscale >Morphogenesis mechanisms in the solvothermal synthesis of BaTiO3 from titanate nanorods and nanotubes
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Morphogenesis mechanisms in the solvothermal synthesis of BaTiO3 from titanate nanorods and nanotubes

机译:solvothermal形态发生机制合成的钛酸钡钛酸纳米棒纳米管

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A rich variety of single crystalline BaTiO3 (BT) nanostructures have been synthesized by two different routes using titanate nanorods and nanotubes as precursors. Free standing, mixed or agglomerated nanotori, solid or hollow nanospheres and nanocubes were obtained. A careful analysis of the shape evolution of the resulting BT nano-objects obtained with both types of precursors and different parameters (precursor composition and shape, temperature, Ba/Ti molar ratio) allowed an improved understanding of the nanostructure formation. The morphogenesis models at play such as Ostwald ripening and the Kirkendall effect have been identified. Other mechanisms hereafter called the self and merging rebuilding processes and a tentative Turing-reaction-diffusion-model are proposed to explain the formation of these obtained nanoparticles.
机译:一个丰富多样的钛酸钡晶体(BT)纳米结构合成了两个使用纳米钛酸和不同的路线碳纳米管作为前体。凝聚nanotori,固体或空洞团簇和nanocubes被获得。仔细分析的形状演化产生BT nano-objects与获得类型的前兆和不同的参数(前体组成和形状、温度、Ba / Ti摩尔比)允许一个改进理解纳米结构的形成。奥斯特瓦尔德等形态发生模型在起作用成熟和柯肯特尔效应识别。自我和合并和重建过程初步Turing-reaction-diffusion-model是提出解释这些的形成获得纳米粒子。

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