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Graphitic carbon nitride materials: controllable synthesis and applications in fuel cells and photocatalysis

Energy & Environmental Science · 2012 · Vol. 5(5) · pp. 6717–6717
Yao ZhengJian LiuJi LiangMietek JaroniecShi‐Zhang Qiao

Abstract

Graphitic carbon nitrides (g-C3N4) are becoming increasingly significant due to the theoretical prediction of their unusual properties and promising applications ranging from photocatalysis, heterogeneous catalysis, to fuel cells. Recently, a variety of nanostructured and nanoporous g-C3N4 materials have been developed for a wide range of new applications. This feature article gives, at first, an overview on the synthesis of g-C3N4 nanomaterials with controllable structure and morphology, and secondly, presents and categorizes applications of g-C3N4 as multifunctional metal-free catalysts for environmental protection, energy conversion and storage. A special emphasis is placed on the potential applications of nanostructured g-C3N4 in the areas of artificial photocatalysis for hydrogen production, oxygen reduction reaction (ORR) for fuel cells, and metal-free heterogeneous catalysis. Finally, this perspective highlights crucial issues that should be addressed in the future in the aforementioned exciting research areas.

Advanced Photocatalysis TechniquesMXene and MAX Phase MaterialsElectronic and Structural Properties of OxidesGraphitic carbon nitridePhotocatalysisNanoporousNanotechnologyMaterials scienceCatalysisNanomaterialsNitrideCarbon nitrideCarbon fibers

Funding

  • Australian Research Council
Citations
1,724
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References
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Energy & Environmental Science · 2010 · 1,267 citations
High oxygen-reduction activity and durability of nitrogen-doped graphene
Energy & Environmental Science · 2011 · 1,214 citations
The rise of graphene
Nature Materials · 2007 · 39,026 citations
Ordered Mesoporous Materials for Bioadsorption and Biocatalysis
Chemistry of Materials · 2005 · 1,108 citations
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