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Electrochemical Carbon Dioxide Reduction in Methanol at Cu and Cu2O-Deposited Carbon Black Electrodes

机译:Cu和Cu2O沉积炭黑电极甲醇中的电化学二氧化碳还原

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摘要

The electrochemical reduction of carbon dioxide in methanol was investigated with Cu and Cu2O-supported carbon black (Vulcan XC-72) nanoparticle electrodes. Herein, Cu or a Cu2O-deposited carbon black catalyst has been synthesized by the reduction method for a Cu ion, and the drop-casting method was applied for the fabrication of a modified carbon black electrode. A catalyst ink solution was fabricated by dispersing the catalyst particles, and the catalyst ink was added onto the carbon plate. The pH of suspension was effective for controlling the Cu species for the metallic copper and the Cu2O species deposited on the carbon black. Without the deposition of Cu, only CO and methyl formate were produced in the electrochemical CO2 reduction, and the production of hydrocarbons could be scarcely observed. In contrast, hydrocarbons were formed by using Cu or Cu2O-deposited carbon black electrodes. The maximum Faraday efficiency of hydrocarbons was 40.3% (26.9% of methane and 13.4% of ethylene) at −1.9 V on the Cu2O-deposited carbon black catalyst. On the contrary, hydrogen evolution could be depressed to 34.7% under the condition.
机译:用Cu和Cu 2 O负载的炭黑(硫磺XC-72)纳米颗粒电极研究甲醇中二氧化碳的电化学还原。这里,通过Cu离子的还原方法合成了Cu或Cu 2沉积的炭黑催化剂,并且施加了滴铸法用于制造改性炭黑电极。通过将催化剂颗粒分散来制造催化剂油墨溶液,并将催化剂油墨加入碳板上。悬浮液的pH可有效地控制金属铜的Cu物种和沉积在炭黑上的Cu2O物种。在不沉积Cu的沉积中,在电化学CO 2中仅制备CO和甲酸甲酯,并且可以几乎不观察到烃的产生。相反,通过使用Cu或Cu2O沉积的炭黑电极形成烃。在Cu2O沉积的炭黑催化剂上,烃的最高法拉烃的氢气效率为40.3%(甲烷的26.9%,乙烯的13.4%)。相反,在条件下,氢进化可能会抑制为34.7%。

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