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Polymer Film Supported Bimetallic Au–Ag Catalysts for Electrocatalytic Oxidation of Ammonia Borane in Alkaline Media

机译:聚合物膜负载双金属Au-Ag催化剂在碱性介质中对氨硼烷的电催化氧化

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摘要

Ammonia borane is widely used in most areas including fuel cell applications.The present paper describes electrochemical behavior of ammonia borane in alkaline media on the poly(p-aminophenol) film modified with Au and Ag bimetallic nanoparticles.The glassy carbon electrode was firstly covered with polymeric film electrochemically and then,Au,Ag,and Au–Ag nanoparticles were deposited on the polymeric film,respectively.The surface morphology and chemical composition of these electrodes were examined by scanning electron microscopy,transmission electron microscopy,electrochemical impedance spectroscopy,X-ray diffraction,and X-ray photoelectron spectroscopy.It was found that alloyed Au–Ag bimetallic nanoparticles are formed.Electrochemical measurements indicate that the developed electrode modified by Au–Ag bimetallic nanoparticles exhibit the highest electrocatalytic activity for ammonia borane oxidation in alkaline media.The rotating disk electrode voltammetry demonstrates that the developed electrode can catalyze almost six-electron oxidation pathway of ammonia borane.Our results may be attractive for anode materials of ammonia borane fuel cells under alkaline conditions.
机译:硼硼烷广泛用于包括燃料电池在内的大多数领域。本文描述了在碱性介质中氨硼烷在Au和Ag双金属纳米粒子改性的聚对氨基苯酚膜上的电化学行为。电化学沉积聚合物膜,然后分别在聚合物膜上沉积金,银和金纳米银。通过扫描电子显微镜,透射电子显微镜,电化学阻抗谱,X-射线显微镜检查这些电极的表面形态和化学组成。射线衍射和X射线光电子能谱。发现形成了合金化的Au-Ag双金属纳米粒子。电化学测量表明,经Au-Ag双金属纳米粒子改性的已开发电极对碱性介质中的氨硼烷氧化具有最高的电催化活性。旋转圆盘电极伏安法表明拍打电极可催化氨硼烷的几乎六电子氧化途径。我们的结果对于碱性条件下氨硼烷燃料电池的负极材料可能具有吸引力。

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