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首页> 外文期刊>ACS nano >Multitwinned spinel nanowires by assembly of nanobricks via oriented attachment: A Case Study of Zn_2TiO_4
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Multitwinned spinel nanowires by assembly of nanobricks via oriented attachment: A Case Study of Zn_2TiO_4

机译:通过定向附接组装纳米砖的多股尖晶石纳米线:Zn_2TiO_4的案例研究

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Nanowires with twinned morphology have been observed in many cubic-phase materials including spinel. We study systematically the formation of multitwinned Zn_2TiO_4 nanowires based on a solid-solid reaction of ZnO nanowires with a conformal shell of TiO_2, which is deposited by atomic layer deposition (ALD). By varying the solid-state reaction temperature, reaction time, and TiO_2 shell thickness, the formation process is carefully analyzed with the help of transmission electron microscopy. It is found that the multitwins develop through an oriented attachment of initially separated spinel nanobricks and a simultaneous Ostwald ripening process. The oriented assembly of the individual bricks is strongly dependent on annealing conditions, which is required to favor the motion and interaction of the bricks. This mechanism differs dramatically from those proposed for twinned nanowires grown with the presence of metal catalysts. Our result provides new insights on controlling the morphology and crystallinity of designed 1-D nanostructures based on a solid-state reaction route.
机译:在包括尖晶石在内的许多立方相材料中都观察到了具有孪生形态的纳米线。我们基于ZnO纳米线与TiO_2保形壳的固-固反应,通过原子层沉积(ALD)沉积,系统地研究了多股Zn_2TiO_4纳米线的形成。通过改变固态反应温度,反应时间和TiO_2壳的厚度,借助透射电子显微镜仔细分析了形成过程。发现多孪晶通过最初分离的尖晶石纳米砖的定向附着和同时的奥斯特瓦尔德熟化过程而发展。各个砖的定向组装在很大程度上取决于退火条件,这对于促进砖的运动和相互作用是必需的。该机理与针对在金属催化剂的存在下生长的孪生纳米线提出的机理大为不同。我们的结果为基于固态反应路线控制设计的一维纳米结构的形态和结晶度提供了新的见识。

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