articleTop 1% cited
Alkali‐Assisted Synthesis of Nitrogen Deficient Graphitic Carbon Nitride with Tunable Band Structures for Efficient Visible‐Light‐Driven Hydrogen Evolution
Advanced Materials · 2017 · Vol. 29(16)
Huijun Yu(Chinese Academy of Sciences)Run Shi(Technical Institute of Physics and Chemistry)Yunxuan Zhao(Technical Institute of Physics and Chemistry)Tong Bian(Technical Institute of Physics and Chemistry)Yufei Zhao(Chinese Academy of Sciences)Chao Zhou(Technical Institute of Physics and Chemistry)Geoffrey I. N. Waterhouse(University of Auckland)Li‐Zhu Wu(Chinese Academy of Sciences)Chen‐Ho Tung(Chinese Academy of Sciences)Tierui Zhang✉(Chinese Academy of Sciences)
Abstract
A facile synthetic strategy for nitrogen-deficient graphitic carbon nitride (g-C<sub>3</sub> N<sub>x</sub> ) is established, involving a simple alkali-assisted thermal polymerization of urea, melamine, or thiourea. In situ introduced nitrogen vacancies significantly redshift the absorption edge of g-C<sub>3</sub> N<sub>x</sub> , with the defect concentration depending on the alkali to nitrogen precursor ratio. The g-C<sub>3</sub> N<sub>x</sub> products show superior visible-light photocatalytic performance compared to pristine g-C<sub>3</sub> N<sub>4</sub> .
Advanced Photocatalysis TechniquesAdvanced Nanomaterials in CatalysisAdvanced biosensing and bioanalysis techniquesMaterials scienceGraphitic carbon nitrideCarbon nitrideNitrideWater splittingHydrogenVisible spectrumNitrogenAlkali metalNanotechnology
Funding
- National Natural Science Foundation of China
- Natural Science Foundation of Beijing Municipality
Citations
2,207
FWCI
56.01
field-weighted impact
References
82
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