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Efficient and selective molecular catalyst for the CO2-to-CO electrochemical conversion in water

机译:用于水中CO2-CO电化学转化的高效选择性分子催化剂

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摘要

Substitution of the four paraphenyl hydrogens of iron tetraphenylporphyrin by trimethylammonio groups provides a water-soluble molecule able to catalyze the electrochemical conversion of carbon dioxide into carbon monoxide. The reaction, performed in pH-neutral water, forms quasi-exclusively carbon monoxide with very little production of hydrogen, despite partial equilibration of CO2 with carbonic acid—a low pKa acid. This selective molecular catalyst is endowed with a good stability and a high turnover frequency. On this basis, prescribed composition of CO–H2 mixtures can be obtained by adjusting the pH of the solution, optionally adding an electroinactive buffer. The development of these strategies will be greatly facilitated by the fact that one operates in water. The same applies for the association of the cathode compartment with a proton-producing anode by means of a suitable separator.
机译:三甲基铵基团取代四苯基卟啉铁的四个对苯基氢提供了一种水溶性分子,该分子能够催化二氧化碳电化学转化为一氧化碳。尽管在CO2与碳酸(一种低pKa酸)的部分平衡下,该反应在pH值为中性的水中进行,形成了几乎唯一的一氧化碳,几乎没有氢气产生。该选择性分子催化剂具有良好的稳定性和高周转频率。在此基础上,可以通过调节溶液的pH值(可选地添加电惰性缓冲剂)来获得规定的CO-H2混合物组成。这些策略的发展将因为人们在水中运行而大大促进。借助于合适的隔板,阴极室与产生质子的阳极的结合也适用。

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