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Facile chemical bath deposition to fabricate RuO2 electrodes for electrochemical chlorine evolution

机译:易于化学浴沉积,以制造用于电化学生成氯的RuO2电极

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Development of a facile preparation process for dimensional stable anodes (DSA) is an important issue to reduce the fabrication cost. During the last three decades, chemical bath deposition (CBD) has emerged as one approach which deposits a thin film with a facile method in ambient conditions. In this study, RuO2 electrodes were fabricated by the CBD method for electrochemical chlorine evolution. The major results show that the CBD method enables the formation of uniform rutile RuO2 nanocrystals with an average size of 30 nm. The electrode morphologies were formed with cracks and pores, and the RuO2 thin films had good adhesion on the Ti substrates. Thermally treated RuO2 films exhibited a high electrocatalytic activity and stability in chlorine evolution satisfying the requirements for a DSA. The amount of deposited RuO2 as well as the cracks, electrocatalytic activity, and stability in chlorine evolution increased with the deposition time. CBD is an attractive synthesis route to fabricate a RuO2 electrode for electrochemical chlorine evolution.
机译:尺寸稳定阳极(DSA)的简便制备方法的开发是降低制造成本的重要问题。在过去的三十年中,化学浴沉积(CBD)已经成为一种在环境条件下以简便的方法沉积薄膜的方法。在这项研究中,RuO2电极是通过CBD方法制造的,用于电化学析氯。主要结果表明,CBD方法能够形成平均尺寸为30 nm的均匀金红石型RuO2纳米晶体。电极形貌形成有裂纹和气孔,RuO2薄膜在Ti衬底上具有良好的附着力。热处理过的RuO2薄膜具有很高的电催化活性,并且在氯析出过程中具有稳定性,可以满足DSA的要求。 RuO2的沉积量以及裂纹,电催化活性和氯放出的稳定性随沉积时间的增加而增加。 CBD是制造用于电化学氯放出的RuO2电极的有吸引力的合成途径。

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