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Amorphous carbon modified nano-sized tungsten carbide as a gas diffusion electrode catalyst for the oxygen reduction reaction

机译:非晶碳改性的纳米碳化钨作为氧还原反应的气体扩散电极催化剂

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摘要

Nanostructured tungsten carbide with high surface area and containing amorphous carbon is prepared by a low temperature combustion synthesis method. The nanostructured tungsten carbide is used as the catalyst in a gas diffusion electrode. The obtained WC with different carbon content was investigated by XRD, FESEM, TG-DTA, BET and XPS. When the molar ratio of C/W is 19/3, the WC particles with different carbon content are obtained after a carbonizing process between 900 and 1400 degrees C, and the content of free carbon in WC also increases gradually with temperature. The carbon content is tested by the high frequency combustion-infrared absorption method in a carbon sulfur analyzer. The electrochemical properties of the tungsten carbide for the oxygen reduction reaction are characterized by its polarization curves and electrochemical impedance. The results show that the presence of the appropriate amorphous carbon is beneficial for improving the conductivity and dispersibility of the tungsten carbide catalyst, and more active centers can be provided by the catalyst.
机译:通过低温燃烧合成法制备具有高表面积并含有无定形碳的纳米结构碳化钨。纳米结构的碳化钨用作气体扩散电极中的催化剂。通过XRD,FESEM,TG-DTA,BET和XPS对所得的不同碳含量的WC进行了研究。当C / W的摩尔比为19/3时,在900至1400℃之间的碳化过程之后,获得具有不同碳含量的WC颗粒,并且WC中的游离碳含量也随着温度逐渐增加。碳含量通过碳硫分析仪中的高频燃烧红外吸收法进行测试。碳化钨用于氧还原反应的电化学性质通过其极化曲线和电化学阻抗来表征。结果表明,适当的无定形碳的存在有利于改善碳化钨催化剂的电导率和分散性,并且催化剂可以提供更多的活性中心。

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