4.8 Article

Reconstructing Supramolecular Aggregates to Nitrogen-Deficient g-C3N4 Bunchy Tubes with Enhanced Photocatalysis for H-2 Production

期刊

ACS APPLIED MATERIALS & INTERFACES
卷 10, 期 22, 页码 18746-18753

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsami.8b04227

关键词

reconstruction; supramolecular aggregates; bunchy microtubes; graphitic carbon nitride; photocatalysis

资金

  1. National Natural Science Foundation of China [U1610104, 21676046]
  2. Chinese Ministry of Education via the Program for New Century Excellent Talents in Universities [NCET-12-0079]

向作者/读者索取更多资源

Developing a facile method to overcome the intrinsic shortcomings of g-C3N4 photocatalyst concerning its insufficient visible light absorption and dissatisfactory separation efficiency of charge carriers is of great significance but remains a challenge. In this work, we report, for the first time, a sapiential strategy for preparing highly efficient nitrogen-deficient g-C3N4 featuring bunchy microtubes [R-tubular carbon nitride (TCN)] via a KOH-assisted hydrothermal treatment of rodlike melamine-cyanuric acid (RMCA) supramolecular aggregates followed by heating the reconstructed RMCA, in which KOH serves as an all-rounder for breaking hydrogen bonds, accelerating hydrolysis of melamine and nitrogen defects forming. This approach endows R-TCN with unique bunchy microtube morphology, enriched nitrogen defects, textural properties, and electronic structure, which result in narrower band gap, higher electric conductivity, more active sites, more negative conductive band, significantly increased visible light harvesting capability, and improved separation efficiency of charge carriers. As a consequence, R-TCN shows 2.44 and 39 times higher hydrogen evolution rate (8.19 mu mol h(-1)) than that of the pristine TCN from RMCA and bulk g-C3N4 from melamine. This new discovery may open a new avenue to fabricate highly efficient g-C3N4 catalysts.

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