Li Bo-Quan, Zhao Chang-Xin, Liu Jia-Ning, Zhang Qiang
Beijing Key Laboratory of Green Chemical Reaction Engineering and Technology, Department of Chemical Engineering, Tsinghua University, Beijing, 100084, China.
Adv Mater. 2019 Aug;31(35):e1808173. doi: 10.1002/adma.201808173. Epub 2019 Apr 10.
Hydrogen peroxide (H O ) is a green oxidizer widely involved in a vast number of chemical reactions. Electrochemical reduction of oxygen to H O constitutes an environmentally friendly synthetic route. However, the oxygen reduction reaction (ORR) is kinetically sluggish and undesired water serves as the main product on most electrocatalysts. Therefore, electrocatalysts with high reactivity and selectivity are highly required for H O electrosynthesis. In this work, a synergistic strategy is proposed for the preparation of H O electrocatalysts with high ORR reactivity and high H O selectivity. A Co-N -C site and oxygen functional group comodified carbon-based electrocatalyst (named as Co-POC-O) is synthesized. The Co-POC-O electrocatalyst exhibits excellent catalytic performance for H O electrosynthesis in O -saturated 0.10 m KOH with a high selectivity over 80% as well as very high reactivity with an ORR potential at 1 mA cm of 0.79 V versus the reversible hydrogen electrode (RHE). Further mechanism study identifies that the Co-N -C sites and oxygen functional groups contribute to the reactivity and selectivity for H O electrogeneration, respectively. This work affords not only an emerging strategy to design H O electrosynthesis catalysts with remarkable performance, but also the principles of rational combination of multiple active sites for green and sustainable synthesis of chemicals through electrochemical processes.
过氧化氢(H₂O₂)是一种绿色氧化剂,广泛参与大量化学反应。将氧气电化学还原为H₂O₂构成了一条环境友好的合成路线。然而,氧还原反应(ORR)在动力学上较为迟缓,并且在大多数电催化剂上,不需要的水是主要产物。因此,对于H₂O₂的电合成来说,非常需要具有高反应活性和选择性的电催化剂。在这项工作中,提出了一种协同策略来制备具有高ORR反应活性和高H₂O₂选择性的H₂O₂电催化剂。合成了一种钴-氮-碳位点和氧官能团共修饰的碳基电催化剂(命名为Co-POC-O)。Co-POC-O电催化剂在O₂饱和的0.10 m KOH中对H₂O₂电合成表现出优异的催化性能,具有超过80%的高选择性以及非常高的反应活性,在1 mA cm⁻²时的ORR电位相对于可逆氢电极(RHE)为0.79 V。进一步的机理研究表明,钴-氮-碳位点和氧官能团分别对H₂O₂电生成的反应活性和选择性有贡献。这项工作不仅提供了一种设计具有卓越性能的H₂O₂电合成催化剂的新策略,还为通过电化学过程绿色可持续地合成化学品提供了多个活性位点合理组合的原则。