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Regulation of size and uniformity of In2O3 nanooctahedra

机译:调节大小和均匀性的研究

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Rational regulation of the size and uniformity of nanoparticles has drawn great interests and shown widespread application, but this cannot be simply achieved by the vapor route. In this work, by adopting a chemical vapor deposition approach, the growth process was intricately regulated to guide the reagent supersaturation, and the large-scale growth of uniform-sized In2O3 nanooctahedra was realized. A one-time nucleation and synchronous growth mode controlled by the reagent supersaturation ratio is proposed to be responsible for the uniformity of size. Furthermore, a series of comparative experiments were conducted to study the size dependence on reaction duration, and temperature difference between the heating and depositing zones. This study demonstrates a feasible approach to prepare uniform-sized nanoparticles through precisely controlling the crystal growth process, and the developed growth strategy could be generalized to synthesize uniform-sized nanostructures of other material systems.
机译:合理调节的大小和均匀性纳米粒子吸引了巨大的利益和显示广泛的应用,但这不能简单通过蒸汽的路线。采用化学气相沉积的方法,的成长过程是复杂的监管指导试剂过度饱和,大规模的统一尺度研究的发展nanooctahedra实现。和同步控制的增长模式试剂过度饱和率提出了尺寸的一致性负责。此外,一系列的对比实验研究进行了尺寸的依赖吗反应时间和温度的差异加热和沉淀区。研究表明准备一个可行的方法统一尺度纳米粒子通过精确控制晶体生长过程,开发可以推广到增长战略综合其他的统一尺度纳米结构材料系统。

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