4.6 Article

Photocatalytic performance of Au/ZnO nanocatalysts for hydrogen production from ethanol

Journal

APPLIED CATALYSIS A-GENERAL
Volume 518, Issue -, Pages 198-205

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.apcata.2015.10.013

Keywords

Photocatalysis; Hydrogen production; Zinc oxide; Gold catalysts; Photoreforming

Funding

  1. FCT/MEC
  2. FEDER [UID/EQU/50020/2013]
  3. FEDER through ON2 [NORTE-07-0162-FEDER-000050]
  4. QREN
  5. FCT [SFRH/BD/79878/2011]
  6. FCT Investigator Program [IF/1381/2013, IF/00514/2014]
  7. European Social Fund
  8. Human Potential Operational Program
  9. Brazilian agency CNPq
  10. Brazilian agency CAPES
  11. Fundação para a Ciência e a Tecnologia [SFRH/BD/79878/2011] Funding Source: FCT

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Gold was loaded on several ZnO samples with different morphologies: needle-like (ZnO-n), flower-like (ZnO-f), rods (ZnO-r), and prepared by a thermal calcination process (ZnO-t). A commercial ZnO sample (ZnO-c) was also used for comparison. Bare ZnO and Au/ZnO materials were used for the photocatalytic production of H-2 from a water-ethanol solution under UV-vis irradiation (lambda > 300 nm). During the photocatalytic runs, hydrogen was generated at a constant rate for all samples, as well as CH4 and CO. The obtained results show that bare ZnO materials were able to promote H-2 photogeneration, being ZnO-f the most efficient in terms of H-2 generation. Loading with Au, in general, increased the photoefficiency for all materials. The most active gold loaded photocatalysts were the ones with the lowest gold nanoparticle sizes: Au/ZnO-f (427 mu mol h(-1) g(cat)(-1); 5.4 nm) and AugnO-n (280 mu mol h(-1) g(cat)(-1); 5.8 nm). The samples with largest size (Au/ZnO-r and AulZnO-t with 6.2 nm, and Au/ZnO-c with 12.5 nm) were not so efficient (values below 230 mu mol h(-1) g(cat)(-1)). Au/ZnO-f seems to be the most promising photocatalyst, generating the highest amount of H-2 and the lowest quantities of CH4 and CO. It is also possible that the intricate morphology of ZnO-f may scatter the incoming light, enhancing light absorption efficiency and increasing the photoefficiency of this material. (C) 2015 Elsevier B.V. All rights reserved.

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