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High-Performance Electrocatalysts for Hydrogen Evolution Reaction Using Flexible Electrodes Made up of Chemically Modified Polyester Films

机译:使用由化学修饰的聚酯膜组成的柔性电极,用于氢进化反应的高性能电催化剂

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In this work we propose a simple methodology to fabricate monometallic nickel [Ni] and bimetallic silver-nickel [Ag/Ni] deposited flexible, self-supported electrodes using polyester (commonly used as overhead projector [OHP]) films. Monometallic Ni is deposited onto chemically modified OHP sheets using a simple electroless deposition process. Similarly bimetallic Ag/Ni coating is carried out by employing galvanic replacement reaction (GRR) of silver onto Ni coated polyester films. Structure, morphology, composition and crystalline phase characteristics of these monometallic and bimetallic deposited flexible electrodes are analyzed by using a variety of spectroscopic and microscopic techniques. Electrochemical characteristics corresponding to hydrogen evolution reaction (HER) are investigated by using linear sweep voltammetry (LSV), Tafel polarization and impedance spectroscopic studies. Effect of time duration associated with GRR on the structural morphology of resultant deposits and on their HER electrocatalytic activity is also investigated. These studies reveal that compared to monometallic Ni, bimetallic Ag/Ni deposited flexible electrodes exhibit enhanced electrocatalytic performance for HER due to strong synergistic effect of bimetallic heterostructures. Among the various electrodes investigated, bimetallic Ag/Ni coated flexible polyester films obtained through 5 minutes of GRR show a higher electrocatalytic activity for HER. These results provide a platform towards the development of alternative electrodes for HER using simple and affordable techniques that play a significant role for further advancement of alkaline water electrolysis.
机译:在这项工作中,我们提出了一种简单的方法,用于制造单金属镍[ni]和双金属银 - 尼克[Ag/ni],使用聚酯(通常用作盖帽投影仪[OHP])膜沉积了柔性,自支撑的电极。使用简单的电气沉积过程将单金属NI沉积在化学修饰的OHP板上。同样,双金属Ag/ni涂层是通过在Ni涂层的聚酯薄膜上使用电的替代反应(GRR)(GRR)进行的。通过使用多种光谱和显微镜技术,分析了这些单金属和双金属沉积电极的结构,形态,组成和结晶相特性。通过使用线性扫描伏安法(LSV),Tafel极化和阻抗光谱研究研究了对应于氢进化反应(HE)的电化学特征。还研究了与GRR相关的持续时间对产生沉积物的结构形态及其电催化活性的影响。这些研究表明,与单金属Ni相比,双金属Ag/Ni沉积的柔性电极由于双金属异质结构的强烈协同作用而表现出增强的电催化性能。在研究的各种电极中,通过5分钟GRR获得的双金属Ag/Ni涂层的柔性聚酯膜显示出更高的电催化活性。这些结果为她使用简单且负担得起的技术为她的替代电极开发提供了一个平台,这些技术在进一步发展碱性水电解方面起着重要作用。

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