首页> 外文会议>Annual conference of metallurgists of CIM;Conference of metallurgists of CIM >Modification of the Electrochemical Characteristics of Colored Passive Layers on Titanium by RuO_2, IrO_2, and RuO_2-IrO_2 Doping
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Modification of the Electrochemical Characteristics of Colored Passive Layers on Titanium by RuO_2, IrO_2, and RuO_2-IrO_2 Doping

机译:RuO_2,IrO_2和RuO_2-IrO_2掺杂对钛彩色无源层的电化学特性的修饰

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AC polarization of Ti in aq. NH_4BF_4 results in formation of passive films that reveal a wide spectrum of well-defined colors. Such layers on Ti can be subsequently modified by their doping with RuO_2, IrO_2, and RuO_2+IrO_2. This method is based on thermal oxidative decomposition of the respective Ru or/and Ir chlorides. Such formed Ru or/and Ir oxides are incorporated into the colored apssive layers, thus modifying their chemical, physical and electronic properties. The morphology of such modified films is examined by SEM and the results show that they possess distinct features. In the case of the RuO_2-modified layer, the surface appears free of cracks or fractures. On the other hand, the IrO_2 and RuO_2+IrO_2 modified passive layers are cracked and fracturec. Electrochemical behavior of the modified films is examined by recording polarization curves and Tafel steady-state plots in the hydrogen evolution reaction region. important electrochemical parameters such as the corrosion potential, corrosion current density, extent of surface passivation, Tafel slope and exchange current density are determined and compared. The chemically modified passive layers on titanium show superior electrocatalytic properties towards the hydrogen evolution reaction with respect to the pure Ti or colored layers, yet their applicability is directly related to the surface morphology. The RuO_2 modified filmd might become a Ti-based cathode due to the lack of surface crack or fracture.
机译:Ti在水溶液中的交流极化NH_4BF_4导致形成钝化膜,这些钝化膜会显示多种明确定义的颜色。 Ti上的此类层随后可以通过掺杂RuO_2,IrO_2和RuO_2 + IrO_2进行修饰。该方法基于相应的Ru或/和Ir氯化物的热氧化分解。将这样形成的Ru或Ir氧化物掺入有色的胶粘剂层中,从而改变其化学,物理和电子性能。通过SEM检查了这种改性膜的形态,结果表明它们具有鲜明的特征。在RuO 2改性层的情况下,表面看起来没有裂缝或断裂。另一方面,IrO_2和RuO_2 + IrO_2改性的钝化层破裂并断裂。通过记录氢释放反应区域中的极化曲线和Tafel稳态图来检查改性膜的电化学行为。确定并比较了重要的电化学参数,例如腐蚀电位,腐蚀电流密度,表面钝化程度,Tafel斜率和交换电流密度。钛上的化学改性钝化层相对于纯钛或有色层对氢析出反应显示出优异的电催化性能,但其适用性与表面形态直接相关。由于缺乏表面裂纹或断裂,RuO_2改性薄膜可能成为基于Ti的阴极。

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