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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 YuRun ShiYunxuan ZhaoTong BianYufei ZhaoChao ZhouGeoffrey I. N. WaterhouseLi‐Zhu WuChen‐Ho TungTierui Zhang

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
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