4.8 Article

Converting Carbohydrates to Carbon-Based Photocatalysts for Environmental Treatment

Journal

ENVIRONMENTAL SCIENCE & TECHNOLOGY
Volume 51, Issue 12, Pages 7076-7083

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.est.7b00118

Keywords

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Funding

  1. Research Grants Council of the Hong Kong Special Administrative Region, China [T23-407/13-N, 14304315]
  2. National Natural Science Foundation of China [21303118]
  3. Vice Chancellor's One-off Discretionary Fund of The Chinese University of Hong Kong [VCF2014016]

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Carbohydrates in biomass can be converted to semiconductive hydrothermal carbonation carbon (HTCC), a material that contains plenty of sp(2)-Water hybridization structures. Under solar light illumination, HTCC generates photoexcited electrons, holes, and hydroxyl radicals. These species can be used for photocatalytic treatment such as water disinfection and degradation of organic pollutants. The photocatalytic activity of HTCC can be significantly enhanced by iodine doping. The enhancement mechanism is investigated by density functional theoretical calculations and electrochemical measurements. The iodine dopants twist and optimize the structures of the sp(2)-hybridization in HTCC, thereby favoring photon-induced excitation. Moreover, the iodine dopants facilitate the charge transfer between different sp(2)-hybridization structures, thus increasing the conductivity and activity of the HTCC. An added benefit is that the I-doped HTCC exhibits lower cytotoxic effect than the pure HTCC. In addition to monosaccharides (glucose), disaccharides (sucrose), and polysaccharides (starch), we have also transformed crops (e.g., rice), plants (e.g., grass), and even agricultural waste (e.g., straw) and animal waste (e.g., cow dung). The conversion of carbohydrates to HTCC may be considered as a Trash to Treasure approach. We believe this discovery will attract a lot of attention from researchers involved in environmental catalysis, waste recycling, and pollution treatment.

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