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Updated: May 15, 2025

Synthesis of Metal Nanoparticles Supported on Carbon Nanotube with Doped Co and N Atoms and its Catalytic Applications in Hydrogen Production
Published on: December 6, 2021
Cobalt-Loaded Carbon Nitride Demonstrates Enhanced Photocatalytic Production of H2 from Lignocellulosic Biomass
Mitchell Beckedorf1, Jenna Holland1, Robert Godin1,2,3
1Department of Chemistry, The University of British Columbia, 3247 University Way, Kelowna, BC V1V 1V7, Canada.
Abstract:
Photocatalytic production of hydrogen (H2) from biomass is a promising avenue for advancing sustainable energy generation. We prepared carbon nitride (CN ) with cobalt (Co) as an oxidation cocatalyst (denoted CN /Co) to improve photocatalytic H2 production through photoreforming components of lignocellulosic biomass under visual light irradiation. CN /Co was synthesized by loading Co onto preformed CN through a straightforward thermal deposition. The thermal loading of Co at 450 °C led to the formation of a mixed valence CoO , which shifted Co2+ character to Co3+ over the course of the hydrogen evolution reaction (HER). Compared to CN without Co, our materials with 0.3 and 0.6 wt % Co demonstrate twice the apparent quantum yield (AQY) for H2 production under irradiation at 405 nm using glucose as a sacrificial electron donor (3.0% and 2.8%, respectively, vs 1.4%). Time-resolved spectroscopic investigations indicate that the Co extracts charges in the subnanosecond time scale and promotes the formation of beneficial long-lived charges. Impressively, some photocatalytic activity is observed when using the robust polymers of cellulose and lignin as the oxidation substrates (0.2 and 0.1% AQY, respectively). The ability to oxidize abundant biomass without extensive prepreparation is promising for waste upcycling applications.
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