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Mesoporous Phosphorus-Doped g-C<sub>3</sub>N<sub>4</sub> Nanostructured Flowers with Superior Photocatalytic Hydrogen Evolution Performance

ACS Applied Materials & Interfaces · 2015 · Vol. 7(30) · pp. 16850–16856
Yun‐Pei ZhuTie‐Zhen RenZhong‐Yong Yuan

Abstract

Graphitic carbon nitride (g-C3N4) has been deemed a promising heterogeneous metal-free catalyst for a wide range of applications, such as solar energy utilization toward water splitting, and its photocatalytic performance is reasonably adjustable through tailoring its texture and its electronic and optical properties. Here phosphorus-doped graphitic carbon nitride nanostructured flowers of in-plane mesopores are synthesized by a co-condensation method in the absence of any templates. The interesting structures, together with the phosphorus doping, can promote light trapping, mass transfer, and charge separation, enabling it to perform as a more impressive catalyst than its pristine carbon nitride counterpart for catalytic hydrogen evolution under visible light irradiation. The catalyst has low cost, is environmentally friendly, and represents a potential candidate in photoelectrochemistry.

Advanced Photocatalysis TechniquesCopper-based nanomaterials and applications2D Materials and ApplicationsMaterials scienceGraphitic carbon nitridePhotocatalysisMesoporous materialWater splittingCatalysisNitrideCarbon fibersNanotechnologyDoping

Funding

  • National Natural Science Foundation of China
  • Ministry of Education of the People's Republic of China
  • State Administration of Foreign Experts Affairs
  • Natural Science Foundation of Tianjin City
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Mesoporous Phosphorus-Doped g-C<sub>3</sub>N<sub>4</sub> Nanostructured Flowers with Superior Photocatalytic Hydrogen Evolution Performance · Scinovex