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Dynamically controlled synthesis of different ZnO nanostructures by a surfactant-free hydrothermal method

机译:无表面活性剂水热法动态控制合成不同ZnO纳米结构

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To broaden the device applications of ZnO nanomaterials, various ZnO nanostructures have been fabricated by a "green" hydrothermal method. To achieve the dynamically controlled surfactant-free hydrothermal growth of ZnO, reactant solutions of zinc acetate dihydrate and hexamine were stirred or aged for a certain time beforehand. X-ray absorption fine structure analysis of intermediates in the disturbed solutions indicates that the coordination number of the Zn atoms varies with different pretreatments. The Zn-O bond length, which is sensitive to both the coordination number of Zn and the number of atoms comprising each agglomerate, also shows different values. Based on the fact that the total amount of Zn2+ in each reactant solution is constant, the formation of different ZnO nanostructures, from ZnO nanorods to nanotapers and rod-on-nanorod structures, can then be designed and understood from the standpoint of dynamic view by using agglomerates with different sizes and concentrations as building blocks. Particularly, ZnO nanopencils with excellent crystallinity and optical properties are obtained by this method. This rational engineering of building blocks in solutions not only provides a fundamental insight into the effects of physical disturbances on the structure of agglomerates and final ZnO products, but also presents a new idea for tunable and "green" fabrications of versatile ZnO nanostructures with the assistance of external force.
机译:为了拓宽ZnO纳米材料的器件应用,已经通过“绿色”水热法制造了各种ZnO纳米结构。为了实现ZnO的动态控制,无表面活性剂的水热生长,预先将乙酸锌二水合物和六胺的反应溶液搅拌或老化一定时间。干扰溶液中中间体的X射线吸收精细结构分析表明,Zn原子的配位数随预处理的不同而变化。对Zn的配位数和构成每个团聚体的原子数均敏感的Zn-O键长也显示出不同的值。基于每种反应物溶液中Zn2 +的总量恒定的事实,可以设计并从动力学观点的角度设计和理解从ZnO纳米棒到纳米锥和棒状纳米棒结构的不同ZnO纳米结构。使用具有不同大小和浓度的团聚体作为构建基块。特别地,通过该方法获得具有优异的结晶度和光学性质的ZnO纳米铅笔。解决方案中构建块的这种合理设计不仅提供了对物理干扰对团聚体和最终ZnO产品结构影响的基本了解,而且还提出了借助通用的ZnO纳米结构进行可调谐和“绿色”制造的新思路。外力。

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