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Synthesis of Highly Uniform Nickel Multipods with Tunable Aspect Ratio by Microwave Power Control

机译:微波功率控制合成高度均匀的镍多端子,微波功率控制

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As the importance of anisotropic nanostructures and the role of surfaces continues to rise in applications including catalysis, magneto-optics, and electromagnetic interference shielding, there is a need for efficient and economical synthesis routes for such nanostructures. The article describes the application of cycled microwave power for the rapid synthesis of highly branched pure-phase face-centered cubic crystalline nickel multipod nanostructures with >99% multipod population. By controlling the power delivery to the reaction mixture through cycling, superior control is achieved over the growth kinetics of the metallic nanostructures, allowing formation of multipods consisting of arms with different aspect ratios. The multipod structures are formed under ambient conditions in a simple reaction system composed of nickel acetylacetonate (Ni(acac)_(2)), oleylamine (OAm), and oleic acid (OAc) in a matter of minutes by selective heating at the (111) overgrowth corners on Ni nanoseeds. The selective heating at the corners leads to accelerated autocatalytic growth along the ?111? direction through a “lightning rod” effect. The length is proprtional to the length and number of microwave (MW)-on cycles, whereas the core size is controlled by continuous MW power delivery. The roles of heating mode (cycling versus variable power versus convective heating) during synthesis of the materials is explored, allowing a mechanism into how cycled microwave energy may allow fast multipod evolution to be proposed.
机译:作为各向异性纳米结构的重要性以及表面的作用继续在包括催化作用,磁光和电磁干扰屏蔽的应用中,需要对这种纳米结构的有效和经济的合成途径。本文介绍了循环微波功率的应用,以便快速合成高度支化的纯相面对面的立方晶镍多端纳米结构,其中具有> 99%的多端口。通过通过循环控制对反应混合物的动力输送,通过金属纳米结构的生长动力学来实现优异的对照,允许形成由具有不同纵横比的臂组成的多端口。在通过在几分钟内通过在分钟内完成( 111)Ni纳米糖上的过度生长。拐角处的选择性加热导致沿α111加速自催化生长?方向通过“避雷针”效果。长度与微波(MW) - 循环的长度和数量突出,而核心尺寸由连续的MW电力输送控制。探索了加热模式(循环与可变功率与对流加热)的作用进行了探索在合成材料期间,允许机制进入循环的微波能量如何提出快速多端口进化。

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