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A highly active nickel electrocatalyst shows excellent selectivity for CO2 reduction in acidic media

机译:高活性镍电催化剂对酸性介质中的CO2还原显示出优异的选择性

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The development of selective electrocatalysts for CO2 reduction in water offers a sustainable route to carbon based fuels and feedstocks. However, molecular catalysts are typically studied in non-aqueous solvents, in part to avoid competitive H-2 evolution. [Ni(cyclam)](2+) (1) is one of the few known electrocatalysts that operate in water and 30 years after its report its activity remains a rarely surpassed benchmark. Here we report that [Ni(cyclam-CO2H)](2+) (cyclam-CO2H = 1,4,8,11-tetraazacyclotetradecane-6-carboxylic acid (2)) shows greatly enhanced activity versus 1 for CO production. At pHs < pK(a) of the pendant carboxylic acid a large increase in catalytic activity occurs. Remarkably, despite the high proton concentration (pH 2), 2 maintains selectivity for CO2 reduction and is believed to be unique in operating selectively in such acidic aqueous solutions.
机译:用于减少水中二氧化碳排放的选择性电催化剂的开发为碳基燃料和原料的开发提供了一条可持续的途径。然而,通常在非水溶剂中研究分子催化剂,部分是为了避免竞争性的H-2析出。 [Ni(cyclam)](2+)(1)是为数不多的已知在水中运行的电催化剂之一,据报道,其活性仍然是很少超过的基准,已有30年了。在这里,我们报告说[Ni(cyclam-CO2H)](2+)(cyclam-CO2H = 1,4,8,11-四氮杂环十四烷-6-羧酸(2))与产生CO的活性相比显示出大大提高的活性。在pH K(a)的侧链羧酸时,催化活性大大提高。值得注意的是,尽管质子浓度高(pH 2),2仍保持了CO2还原的选择性,并且据信在这种酸性水溶液中选择性操作具有独特性。

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