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Electrochemical reduction of CO2 using Germanium-Sulfide-Indium amorphous glass structures

机译:使用硫化锗-铟无定形玻璃结构电化学还原CO2

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摘要

The research in electrochemical reduction of CO is shifting towards the discovery of new and novel materials. This study shows a new class of material, that of Ge-S-In chalcogenide glass, to be active for reduction of CO in aqueous solutions. Experiments were conducted with bulk and particle form of the material, yielding different product for each structural form. Faradaic efficiency of upto 15% was observed in bulk form for CO production while formic acid with up to 26.1 % faradaic efficiency was measured in powder form. Chalcogenide studies have focused primarily on the photoelectrochemical reduction however these results provide a strong merit for introducing metal in chalcogenide glass structures for electrochemical reduction of CO . The activity for CO reduction and the change in product selectivity reflects that further efforts to improve the glass structures can be undertaken in order to increase the faradaic efficiency and selectivity of the products.
机译:电化学还原CO的研究正在向发现新的和新颖的材料转移。这项研究显示了一种新型材料,即Ge-S-In硫属化物玻璃,可以有效降低水溶液中的CO。对材料的散装和颗粒形式进行了实验,每种结构形式产生不同的产品。散装形式的CO生产法拉第效率高达15%,而粉状法拉第效率高达26.1%。硫化物的研究主要集中在光电化学还原,但是这些结果为在硫化物玻璃结构中引入金属进行CO的化学还原提供了强有力的优点。减少CO的活性和产物选择性的变化反映出,可以进行进一步的努力来改善玻璃结构,以提高产物的法拉第效率和选择性。

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