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Ruthenium Oxide Nanotubes Via Template Electrosynthesis

机译:通过模板电合成的氧化钌纳米管

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摘要

Ruthenium oxide nanotubes were fabricated by a single-step galvanostatic deposition using porous anodic alumina membrane as template. For the electrodeposition process, we used a electrochemical cell specifically designed in order to employ only 0.5 ml of 0.02 M RuCl_3·xH_2O solution. The deposition from a very small volume was specifically addressed owing to the high cost of ruthenium compounds, which could be of some relevance from an applicative point of view. Several techniques were used to characterize the samples prior to and after thermal treatment, which was carried out at different temperatures in order to study the crystallization process of the deposit. Raman spectroscopy of as-deposited nanotubes revealed the presence of RuO_2 vibrating modes, while XRD patterns did not show RuO_2 peaks, consequently the formation of a subnano-crystalline structure was proposed. After thermal treatment at different temperature above 600℃, they crystallized in the tetragonal form of RuO_2. Both XRD analysis and Raman spectroscopy revealed that crystal size of the deposit grew with temperature up to 1000℃. SEM investigations showed the formation of nanotubes having an uniform average external diameter, while wall thickness changed throughout the height.
机译:以多孔阳极氧化铝膜为模板,通过一步恒电流沉积法制备氧化钌纳米管。对于电沉积过程,我们使用了专门设计的电化学电池,以便仅使用0.5 ml的0.02 M RuCl_3·xH_2O溶液。由于钌化合物的高成本,特别解决了从很小的体积进行沉积的问题,从应用的角度来看,这可能具有一定的意义。为了研究沉积物的结晶过程,在热处理之前和之后使用了几种技术来表征样品,这些技术在不同的温度下进行。沉积纳米管的拉曼光谱显示存在RuO_2振动模式,而XRD图没有显示RuO_2峰,因此提出了亚纳米晶体结构的形成。经过600℃以上不同温度的热处理,它们以RuO_2的四方形式结晶。 XRD分析和拉曼光谱分析均表明,沉积物的晶体尺寸随温度升高至1000℃而增大。 SEM研究表明,形成的纳米管具有均匀的平均外径,而壁厚在整个高度上都变化。

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