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Formate to Oxalate: A Crucial Step for the Conversion of Carbon Dioxide into Multi-carbon Compounds

机译:甲醛甲酸盐:将二氧化碳转化为多碳化合物的关键步骤

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The efficient conversion of formate into oxalate could enable the industrial-scale synthesis of multi-carbon compounds from CO2 by C-C bond formation. We found conditions for the highly selective catalytic conversion of molten alkali formates into pure solid oxalate salts. Nearly quantitative conversion was accomplished by calcination of sodium formates with sodium hydride. A catalytic mechanism proceeding through a carbonite intermediate, generated upon H-2 evolution, was supported by density functional theory calculations, Raman spectroscopy, and the observed changes in the catalytic performance upon changing the nature of the base or the reaction conditions. Whereas the conversion of formate into oxalate by using a hydroxide ion catalyst was previously studied, hydride ion catalysis and the chain reaction mechanism for the conversion involving a carbonite ion intermediate are reported herein for the first time.
机译:甲酸甲酸甲酸盐的有效转化可以通过C-C键形成能够从C-C键的二氧化碳的工业规模合成。 我们发现熔融碱含量高选择性催化转化物的条件甲醛甲酸盐中纯固体草酸盐盐。 通过氢化钠煅烧钠甲酸钠完成几乎定量的转化。 通过在H-2进化上产生的碳酸氢铝基中间体进行催化机制,通过密度官能理论计算,拉曼光谱,以及在改变碱或反应条件时所观察到的催化性能的变化。 然而,先前研究了甲酸甲酸甲酸盐转化为草酸盐,氢化物离子催化和用于涉及碳酸根离子中间体的转化的链反应机理。

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