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Preparation of tin dioxide nanotubes via electrosynthesis in a template

机译:在模板中通过电合成制备二氧化锡纳米管

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摘要

A gold electrode modified with a porous polycarbonate membrane was immersed in an aqueous tin chloride solution. Electrochemistry was employed to control the local pH within the pores and drive a precipitation reaction. Removal of the gold and dissolution of the polymer yielded 1-dimensional polycrystalline tin oxide particles, the crystallinity of the material was enhanced by annealing at 650 degrees C in ambient. Scanning electron microscopy indicated that the diameter of the as-prepared 1-dimensional tin oxide nanoparticles matched the diameter of the pores in the membrane, 100 nm, and the length, between 0.4 and 1.4 mu m, was dependent on the charge passed. High resolution transmission electron microscopy indicates that the particles were hollow, with a wall thickness of approximately 10 nm. The formation of nanotubes results from continuous side-wall precipitation along a reaction front.
机译:将用多孔聚碳酸酯膜改性的金电极浸入氯化锡水溶液中。使用电化学来控制孔内的局部pH并驱动沉淀反应。除去金并溶解聚合物,得到一维的多晶氧化锡颗粒,通过在环境温度下在650摄氏度下退火来增强材料的结晶度。扫描电子显微镜表明,所制备的一维氧化锡纳米颗粒的直径与膜中孔的直径匹配,为100 nm,长度在0.4到1.4μm之间,取决于所通过的电荷。高分辨率透射电子显微镜表明颗粒是空心的,壁厚约为10 nm。纳米管的形成是由沿着反应前沿的连续侧壁沉淀引起的。

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