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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Segmented All-Platinum Nanowires with Controlled Morphology through Manipulation of the Local Electrolyte Distribution in Fluidic Nanochannels during Electrodeposition
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Segmented All-Platinum Nanowires with Controlled Morphology through Manipulation of the Local Electrolyte Distribution in Fluidic Nanochannels during Electrodeposition

机译:通过控制电沉积过程中流体纳米通道中的局部电解质分布来控制形态的分段全铂纳米线

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Synthesis of segmented all-Pt nanowires is achieved by a template-assisted method. The combination of a suitably chosen electrolyte/template system with pulse-reverse electrodeposition allows the formation of well-defined segments linked to nanowires. Manipulation of the morphology is obtained by controlling the electrokinetic effects on the local electrolyte distribution inside the nanochannels during the nanowire growth process, allowing a deviation from the continuously cylindrical geometry given by the nanoporous template. The length of the segments can be adjusted as a function of the cathodic pulse duration. Applying constant pulses leads to segments with homogeneous shape and dimensions along most of the total wire length. X-ray diffraction demonstrates that the preferred crystallite orientation of the polycrystalline wires varies with the average segment length. The results are explained considering transitions in texture formation with increasing thickness of the electrodeposit. A mechanism of segment formation is proposed based on structural characterizations. Nanowires with controlled segmented morphology are of great technological importance, because of the possibility to precisely control their substructure as a means of tuning their electrical, thermal, and optical properties. The concept we present in this work for electrodeposited platinum and track-etched polycarbonate membranes can be applied to other selected materials as well as templates and constitutes a general method to controlled nanostructuring and synthesis of shape controlled nanostructures.
机译:分段的全Pt纳米线的合成是通过模板辅助方法实现的。适当选择的电解质/模板系统与脉冲反向电沉积的组合可以形成与纳米线连接的明确定义的链段。通过在纳米线生长过程中控制对纳米通道内部局部电解质分布的电动效应,可以控制形貌,从而允许偏离纳米孔模板给出的连续圆柱几何形状。区段的长度可以根据阴极脉冲持续时间来调节。施加恒定的脉冲会导致线段的形状和尺寸沿整个导线的大部分长度均匀。 X射线衍射表明,多晶线的优选微晶取向随平均片段长度而变化。考虑到电沉积厚度增加时织构形成的过渡,解释了结果。提出了一种基于结构特征的节段形成机理。具有可控的分段形态的纳米线具有极大的技术重要性,因为可以精确地控制其子结构作为调节其电,热和光学特性的手段。我们在这项工作中提出的电沉积铂膜和径迹刻蚀聚碳酸酯膜的概念可以应用于其他选定的材料以及模板,并构成控制纳米结构和形状控制纳米结构合成的通用方法。

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