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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Alternating Misfit Layered Transition/Alkaline Earth Metal Chalcogenide Ca3Co4O9 as a New Class of Chalcogenide Materials for Hydrogen Evolution
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Alternating Misfit Layered Transition/Alkaline Earth Metal Chalcogenide Ca3Co4O9 as a New Class of Chalcogenide Materials for Hydrogen Evolution

机译:交替错配层状过渡/碱土金属硫属元素化物Ca3Co4O9作为一类新型的硫属元素氢生成材料

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摘要

Layered misfit chalcogenide structures have garnered much attention and prestige in several applications such as thermoelectric materials and high-temperature superconductors. However, its potentials for important electrochemical applications such as hydrogen evolution and oxygen reduction reactions have not been systematically studied. Till date, such applications have mainly applied precious metal and oxides with perovskite- or spinel-based structures. In this work, we synthesized a misfit layered mixed oxide in the form of Ca3Co4O9 and investigated its structural, morphological, and electrochemical properties. The misfit layered Ca3Co4O9 has promising capabilities as electrocatalyst for hydrogen evolution and oxygen reduction processes. A Tafel slope of 87 mV/decade for hydrogen evolution reaction was achieved by Ca3Co4O9, while the overpotential for oxygen reduction reaction was lowered up to 38 mV in comparison to glassy carbon. Moreover, a comparably higher heterogeneous electron transfer rate of 3.76 X 10~(-4) cm s~(-1) was achieved for Ca3Co4O9 compared to 3.11 X 10~(-4) cm s~(-1) for glassy carbon. The affordability and electrocatalytic properties have endowed Ca,Co4O9 as a potential replacement for precious metal in electrocatalysis and electrochemical sensing applications.
机译:分层错配硫族化物结构在热电材料和高温超导体等几种应用中赢得了广泛的关注和声誉。但是,尚未对其重要的电化学应用(如析氢和氧还原反应)的潜力进行系统研究。迄今为止,这种应用主要应用了具有钙钛矿或尖晶石基结构的贵金属和氧化物。在这项工作中,我们合成了Ca3Co4O9形式的错配层状混合氧化物,并研究了其结构,形态和电化学性质。错配的Ca3Co4O9层具有令人信服的能力,可作为氢析出和氧还原过程的电催化剂。通过Ca3Co4O9,用于析氢反应的Tafel斜率为87 mV /十年,而与玻璃碳相比,氧还原反应的过电位降低到38 mV。此外,与玻璃碳的3.11 X 10〜(-4)cm s〜(-1)相比,Ca3Co4O9的异质电子传输速率为3.76 X 10〜(-4)cm s〜(-1)。 Ca,Co4O9的可负担性和电催化性能使其可以在电催化和电化学传感应用中替代贵金属。

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