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Highly Efficient Solar-Driven Carbon Dioxide Reduction on Molybdenum Disulfide Catalyst Using Choline Chloride-Based Electrolyte

机译:使用胆碱氯化胆碱基电解质对二硫化钼催化剂的高效太阳能驱动二氧化碳减少

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摘要

Conversion of CO2 to energy-rich chemicals using renewable energy is of much interest to close the anthropogenic carbon cycle. However, the current photoelectrochemical systems are still far from being practically feasible. Here the successful demonstration of a continuous, energy efficient, and scalable solar-driven CO2 reduction process based on earth-abundant molybdenum disulfide (MoS2) catalyst, which works in synergy with an inexpensive hybrid electrolyte of choline chloride (a common food additive for livestock) and potassium hydroxide (KOH) is reported. The CO(2 )saturated hybrid electrolyte utilized in this study also acts as a buffer solution (pH approximate to 7.6) to adjust pH during the reactions. This study reveals that this system can efficiently convert CO(2 )to CO with solar-to-fuel and catalytic conversion efficiencies of 23% and 83%, respectively. Using density functional theory calculations, a new reaction mechanism in which the water molecules near the MoS(2 )cathode act as proton donors to facilitate the CO2 reduction process by MoS2 catalyst is proposed. This demonstration of a continuous, cost-effective, and energy efficient solar driven CO2 conversion process is a key step toward the industrialization of this technology.
机译:使用可再生能源将CO2转化为能量的化学品,对缩小人为碳循环非常感兴趣。然而,目前的光电化学系统仍然远远不可行。这里的成功示范了基于地球 - 丰富的二硫化钼(MOS2)催化剂的连续,节能和可扩展的太阳能驱动的二氧化碳还原过程,其在协同作用中,其具有廉价的氯化胆碱杂交电解质(牲畜的常见食品添加剂报道))和氢氧化钾(KOH)。本研究中使用的CO(2)饱和杂化电解质还用作缓冲溶液(pH值近似为7.6),以在反应期间调节pH。该研究表明,该系统可以将CO(2)与太阳能 - 燃料和催化转化效率有效地转化为CO(2),分别为23%和83%。使用密度函数理论计算,提出了一种新的反应机理,其中MOS(2)阴极附近的水分子作为质子供体,以便于通过MOS2催化剂促进CO 2还原过程。该展示连续,经济高效,节能的太阳能驱动二氧化碳转换过程是朝向该技术的工业化的关键步骤。

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