4.8 Article

Hierarchical Honeycomb Br-, N-Codoped TiO2 with Enhanced VisibleLight Photocatalytic H-2 Production

期刊

ACS APPLIED MATERIALS & INTERFACES
卷 10, 期 22, 页码 18796-18804

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsami.8b04947

关键词

Br; N; TiO2; H-2; photocatalyst

资金

  1. National Natural Science Foundation of China [21676056, 21376051, 51673040]
  2. Six Talents Pinnacle Program of Jiangsu Province of China [JNHB-006]
  3. Qing Lan Project of Jiangsu Province [1107040167]
  4. Graduate student scientific research innovation program of Jiangsu Province [KYCX17_0134, KYCX17_0136]
  5. Scientific Research Foundation of Graduate School of Southeast University [YBJJ1732]
  6. Postgraduate Research & Practice Innovation Program of Jiangsu Province [KYCX17_0134]
  7. Fund Project for Transformation of Scientific and Technological Achievements of Jiangsu Province of China [BA2014100]
  8. Fundamental Research Funds for the Central Universities [2242018k30008, 3207047402, 3207046409]
  9. Priority Academic Program Development of Jiangsu Higher Education Institutions (PAPD) [1107047002]

向作者/读者索取更多资源

The halogen elements modification strategy of TiO(2 )encounters a bottleneck in visible-light H-2 production. Herein, we have for the first time reported a hierarchical honeycomb Br-, N-codoped anatase TiO(2 )catalyst (HM-Br,N/TiO2) with enhanced visible-light photocatalytic H-2 production. During the synthesizing process, large amounts of meso-macroporous channels and TiO(2 )nanosheets were fabricated in massive TiO(2 )automatically, constructing the hierarchical honeycomb structure with large specific surface area (464 m(2)g(-1)). cetyl trimethylammonium bromide and melamine played a key role in constructing the meso-macroporous channels. Additionally, HM-Br,N/TiO2 showed a high visible-light H(2)production rate of 2247 mu mol h(-1)g(-1), which is far more higher than single Br- or N-doped TiO2 (0 or 63 mu mol h(-1)g(-1), respectively), thereby demonstrating the excellent synergistic effects of Br and N elements in H(2 )evolution. In HM-Br,N/TiO2 catalytic system, the codoped Br-N atoms could reduce the band gap of TiO(2 )to 2.88 eV and the holes on acceptor levels (N acceptor) can passivate the electrons on donor levels (Br donor), thereby preventing charge carriers recombination significantly. Furthermore, the proposed HM-Br,N/TiO(2 )fabrication strategy had a wide range of choices for N source (e.g., melamine, urea, and dicyandiamide) and it can be applied to other TiO2 materials (e.g., P25) as well, thereby implying its great potential application in visible-light H-2 production. Finally, on the basis of experimental results, a possible photocatalytic H(2 )production mechanism for HM-Br,N/TiO2 was proposed.

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