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Electrochemical deposition of iron nanoneedles on titanium oxide nanotubes

机译:铁纳米针在氧化钛纳米管上的电化学沉积

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Iron as a catalyst has wide applications for hydrogen generation from ammonia, photodecomposition of organics, and carbon nanotube growth. Tuning the size and shape of iron is meaningful for improving the catalysis efficiency. It is the objective of this work to prepare nanostructured iron with high surface area via electrochemical deposition. Iron nanoneedles were successfully electrodeposited on Ti supported TiO_2 nanotube arrays in a chlorine-based electrolyte containing 0.15 M FeCI_2-4H_2O and 2.0 M HCI. Transmission electron microscopic analysis reveals that the average length of the nanoneedles is about 200 nm and the thickness is about 10 nm. It has been found that a high overpotential at the cathode made of Ti/TiO_2 nanotube arrays is necessary for the formation of the nanoneedles. Cyclic voltammetry test indicates that the electrodeposition of iron nanoneedles is a concentration-limited process.
机译:铁作为催化剂具有广泛的用途,可用于从氨中产生氢,有机物的光分解以及碳纳米管的生长。调节铁的尺寸和形状对于提高催化效率是有意义的。这项工作的目的是通过电化学沉积制备具有高表面积的纳米结构铁。铁纳米针成功地电沉积在含0.15 M FeCl_2-4H_2O和2.0 M HCl的氯基电解质中的钛负载TiO_2纳米管阵列上。透射电子显微镜分析表明,纳米针的平均长度为约200nm,厚度为约10nm。已经发现,由Ti / TiO_2纳米管阵列制成的阴极上的高过电势对于形成纳米针是必要的。循环伏安法测试表明,铁纳米针的电沉积是一个浓度受限的过程。

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