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In situ study of wet chemical etching of ZnO nanowires with different diameters and polar surfaces by LCTEM

机译:LCTEM对不同直径和极性表面的ZnO纳米线进行湿化学刻蚀的原位研究

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Understanding how nanomaterials evolve during the etching process is critical in many fields. Herein, the wet chemical etching process of zinc oxide (ZnO) nanowires is studied in situ in radiolytic water via liquid cell transmission electron microscopy (LCTEM). The dissolution rate of thin nanowires is constant with reducing diameter, while thick nanowires (with the original diameter being larger than 95 nm) show complicated etching behaviors. The dissolution rate of thick nanowires is constant at the first stage and then increases. Anisotropic etching occurs at both ends of thick nanowires and distinct tips are formed. Different polarities at the two ends of the nanowire lead to differently shaped tips and different tip formation processes. The arrangement of the sidewall cones determines the macroscopic angle of the final tips. The present results are important for understanding liquid phase etching behavior in different dimensions and with different polar ends.
机译:了解纳米材料在发展蚀刻过程在许多领域是至关重要的。在此,锌的湿法化学腐蚀过程氧化(氧化锌)研究纳米线原位辐射分解水通过液体细胞传播电子显微镜(LCTEM)。薄的纳米线与减少是恒定的直径,而厚的纳米线(原来的直径大于95纳米)显示复杂的腐蚀行为。厚的纳米线在第一个是常数阶段,然后增加。发生在厚纳米线的两端形成独特的技巧。纳米线的两端导致不同形成不同形状的技巧和提示流程。确定最终的宏观角度小费。理解液相腐蚀行为不同的尺寸和不同的极性结束。

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