Using Palladium and Gold Palladium Nanoparticles Decorated with Molybdenum Oxide for Versatile Hydrogen Peroxide Electroproduction on Graphene Nanoribbons

ACS APPLIED MATERIALS & INTERFACES(2022)

引用 13|浏览4
暂无评分
摘要
Electrocatalytic production of H2O2 via a twoelectron oxygen reduction reaction (ORR-2e(-)) is regarded as a highly promising decentralized and environmentally friendly mechanism for the production of this important chemical commodity. However, the underlying challenges related to the development of catalytic materials that contain zero or low content of noble metals and that are relatively more active, selective, and resistant for long-term use have become a huge obstacle for the electroproduction of H2O2 on commercial and industrial scales. The present study reports the synthesis and characterization of low metal-loaded (<= 6.4 wt %) catalysts and their efficiency in H2O2 electroproduction. The catalysts were constructed using gold palladium molybdenum oxide (AuPdMoOx) and palladium molybdenum oxide (PdMoOx) nanoparticles supported on graphene nanoribbons. Based on the application of a rotating ring-disk electrode, we conducted a thorough comparative analysis of the electrocatalytic performance of the catalysts in the ORR under acidic and alkaline media. The proposed catalysts exhibited high catalytic activity (ca. 0.08 mA g(noble) (-1)(metal) in an acidic medium and ca. 6.6 mA g(noble metal)(-1) in an alkaline medium), good selectivity (over 80%), and improved long-term stability toward ORR-2e(-). The results obtained showed that the enhanced ORR activity presented by the catalysts, which occurred preferentially via the twoelectron pathway, was promoted by a combination of factors including geometry, Pd content, interparticle distance, and site-blocking effects, while the electrochemical stability of the catalysts may have been enhanced by the presence of MoOx.
更多
查看译文
关键词
oxygen reduction reaction,hydrogen peroxide production,graphene nanoribbon,gold palladium alloy,molybdenum decoration
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要