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Surface-Oxygen-Rich Bi@C Nanoparticles for High-Efficiency Electroreduction of CO2 to Formate

机译:表面富氧Bi@C纳米颗粒用于CO2高效电还原制甲酸盐

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摘要

The electrochemical CO2 reduction reaction (CO2RR) is a promising strategy to alleviate excessive CO2 levels in the atmosphere and produce value-added feedstocks and fuels. However, the synthesis of high efficiency and robust electrocatalysts remains a great challenge. This work reports the green preparation of surface-oxygen-rich carbon-nanorodsupported bismuth nanoparticles (SOR Bi@C NPs) for an efficient CO2RR toward formate. The resultant SOR Bi@C NPs catalyst displays a Faradaic efficiency of more than 91 for formate generation over a wide potential range of 440 mV. Ex situ XPS and XANES and in situ Raman spectroscopy demonstrate that the Bi-O/Bi (110) structure in the pristine SOR Bi@C NPs can remain stable during the CO2RR process. DFT calculations reveal that the Bi-O/Bi (110) structure can facilitate the formation of the *OCHO intermediate. This work provides an approach to the development of high-efficiency Bi-based catalysts for the CO2RR and offers a unique insight into the exploration of advanced electrocatalysts.
机译:电化学 CO2 还原反应 (CO2RR) 是一种很有前途的策略,可以缓解大气中过量的 CO2 含量并生产增值原料和燃料。然而,合成高效、稳健的电催化剂仍然是一个巨大的挑战。本工作报道了表面富氧碳纳米棒负载铋纳米颗粒(SOR Bi@C NPs)的绿色制备,用于高效制备甲酸盐的CO2RR。所得的 SOR Bi@C NPs 催化剂在 440 mV 的宽电位范围内生成甲酸盐的法拉第效率超过 91%。原位XPS和XANES以及原位拉曼光谱表明,原始SOR Bi@C NPs中的Bi-O/Bi(110)结构在CO2RR过程中可以保持稳定。DFT计算表明,Bi-O/Bi(110)结构可以促进*OCHO中间体的形成。这项工作为开发用于CO2RR的高效双基催化剂提供了一种方法,并为探索先进电催化剂提供了独特的见解。

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