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首页> 外文期刊>Inorganica Chimica Acta >Selective ligand modification of cobalt porphyrins for carbon dioxide electrolysis: Generation of a renewable H-2/CO feedstock for downstream catalytic hydrogenation
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Selective ligand modification of cobalt porphyrins for carbon dioxide electrolysis: Generation of a renewable H-2/CO feedstock for downstream catalytic hydrogenation

机译:二氧化碳电解钴卟啉的选择性配体改性:下游催化氢化可再生H-2 / CO原料的产生

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摘要

Catalytic hydrogenation is an attractive approach to produce green fuels and chemicals. The building blocks for these processes may be effectively produced from renewable power via direct electrochemical reduction of carbon dioxide in an aqueous media. For the first time, the impact of increasing the local proton concentration of cobalt porphyrin was examined by synthesizing new cobalt porphyrins 2, Co(o-OCH3)TPP and cobalt porphyrin 3, Co(o-OH)TPP. Cobalt porphyrins coated on carbon paper converted carbon dioxide and water into a mixture of hydrogen and carbon monoxide in an aqueous electrolyte at near neutral pH. Increasing the local proton availability of the commercial cobalt porphyrin 1, accelerates hydrogen generation under heterogeneous conditions across the range of potentials tested (-0.85 to -1.5 V vs. Ag/AgCl) and demonstrates high Faradaic efficiencies (ca. 90%) at low over-potentials (ca. 540 mV). The culmination of this work can help identify key parameters that facilitate generation of sustainable reagents for catalytic hydrogenation under practical and scalable conditions.
机译:催化氢化是一种产生绿色燃料和化学品的有吸引力的方法。这些方法的构建块可以通过在水性介质中的二氧化碳的直接电化学还原通过可再生能力有效地产生。首次,通过合成新的钴卟啉2,CO(O-OCH3)TPP和钴卟啉3,CO(O-OH)TPP来研究增加钴卟啉局部质子浓度的影响。涂在碳纸上的钴卟啉在附近中性pH附近的水电解质中转化了二氧化碳和水中的混合物和一氧化碳。增加商业钴卟啉1的局部质子可用性,在经过测试的电位范围内(-0.85至-1.5V Vs.Ag / AgCl),在异质条件下加速氢气产生,并在低温下证明高珊径效率(约90%)过势(约540 mV)。本作作品的高潮可以帮助鉴定促进在实际和可扩展条件下促进可持续试剂的促进可持续试剂的关键参数。

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