N-doped monolayer graphene catalyst on silicon photocathode for hydrogen production

作者:Sim Uk*; Yang Tae Youl; Moon Joonhee; An Junghyun; Hwang Jinyeon; Seo Jung Hye; Lee Jouhahn; Kim Kye Yeop; Lee Joohee; Han Seungwu; Hong Byung Hee; Nam Ki Tae
来源:Energy & Environmental Science, 2013, 6(12): 3658-3664.
DOI:10.1039/c3ee42106f

摘要

Carbon-based catalysts have been attracting attention in renewable energy technologies due to the low cost and high stability, but their insufficient activity is still a challenging issue. Here, we suggest that monolayer graphene can be used as a catalyst for solar-driven hydrogen evolution reaction on Si-photocathodes, and its catalytic activity is boosted by plasma treatment in N-2-ambient. The plasma treatment induces abundant defects and the incorporation of nitrogen atoms in the graphene structure, which can act as catalytic sites on graphene. The monolayer graphene containing nitrogen impurities exhibits a remarkable increase in the exchange current density and leads to a significant anodic shift of the onset of photocurrent from the Si-photocathode. Additionally, monolayer graphene shows the passivation effect that suppresses the surface oxidation of Si, thus enabling the operation of the Si-photocathode in neutral water. This study shows that graphene itself can be applied to a photoelectrochemical system as a catalyst with high activity and chemical stability.

  • 出版日期2013-12

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