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Uranium- and Thorium-Doped Graphene for Efficient Oxygen and Hydrogen Peroxide Reduction

机译:掺铀和Thor的石墨烯可有效减少氧气和过氧化氢

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摘要

Oxygen reduction and hydrogen peroxide reduction are technologically important reactions in the fields of energy generation and sensing. Metal-doped graphenes, where metal serves as the catalytic center and graphene as the high area conductor, have been used as electrocatalysts for such applications. In this paper, we investigated the use of uranium-graphene and thorium-graphene hybrids prepared by a simple and scalable method. The hybrids were synthesized by the thermal exfoliation of either uranium- or thorium-doped graphene oxide in various atmospheres. The synthesized graphene hybrids were characterized by high-resolution XPS, SEM, SEM-EDS, combustible elemental analysis, and Raman spectroscopy. The influence of dopant and exfoliation atmosphere on electrocatalytic activity was determined by electrochemical measurements. Both hybrids exhibited excellent electrocatalytic properties toward oxygen and hydrogen peroxide reduction, suggesting that actinide-based graphene hybrids have enormous potential for use in energy conversion and sensing devices.
机译:氧气还原和过氧化氢还原是能量产生和传感领域中的重要技术反应。金属用作金属催化中心,石墨烯作为高面积导体的金属掺杂石墨烯已被用作此类应用的电催化剂。在本文中,我们研究了通过简单且可扩展的方法制备的铀-石墨烯和or-石墨烯杂化物的使用。通过在各种气氛中对铀或th掺杂的氧化石墨烯进行热剥离来合成杂化物。合成的石墨烯杂化物通过高分辨率XPS,SEM,SEM-EDS,可燃元素分析和拉曼光谱进行了表征。通过电化学测量确定掺杂剂和剥落气氛对电催化活性的影响。两种杂化物对氧和过氧化氢的还原均表现出优异的电催化性能,这表明基于act系元素的石墨烯杂化物具有巨大的潜力,可用于能量转换和传感装置。

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