4.8 Article

Building Oxime-Ni2+ Complex on Polymeric Carbon Nitride: Molecular-Level Design of Highly Efficient Hydrogen Generation Photocatalysts

Journal

ACS APPLIED MATERIALS & INTERFACES
Volume 12, Issue 1, Pages 868-876

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acsami.9b18856

Keywords

photocatalytic hydrogen production; polymeric carbon nitride; oxime-Ni2+ moieties; solar fuel production; artificial photosynthesis

Funding

  1. NTU seed funding for Solar Fuels Laboratory, Singapore MOE AcRF-Tier1 [2018-T1-001-072, RG 9/18]
  2. NTU seed funding for Solar Fuels Laboratory, Singapore MOE AcRF-Tier2 [M0E2016-T2-2-056]
  3. NTU seed funding for Solar Fuels Laboratory, Singapore AcRF-Tier2 [M0E2018-T2-1-017]

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We report an effective strategy to in situ construct the oxime-Ni2+ complex unit on polymeric carbon nitride (PCN) as a molecular catalyst for the highly efficient hydrogen evolution reaction (HER). The PCN was functionalized with oxime groups that allowed for immobilizing Ni2+ to form oxime-Ni2+ complex units on the PCN surface with uniform distribution. The electrochemical characterizations reveal that these oxime-Ni2+ units can effectively capture photogenerated electrons from PCN and serve as active catalytic sites for proton reduction. Notably, the oxime-Ni2+ enriched PCN showed even higher activities for photocatalytic hydrogen evolution than the Pt-loaded PCN. This work provides a new way to synthesize low-cost photocatalysts with surface grafting of noble-metal free molecular HER catalysts for efficient light-driven hydrogen generation.

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