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Photocatalytic H2 Generation Efficiencies of TiO2 Nanotube-based Heterostructures Grafted with ZnO Nanorods, Ag Nanoparticles, or Pd Nanodendrites
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Photocatalytic H2 Generation Efficiencies of TiO2 Nanotube-based Heterostructures Grafted with ZnO Nanorods, Ag Nanoparticles, or Pd Nanodendrites

Yi-Ching Huang, Shou-Yi ChangJih-Mirn Jehng
Journal of Physical Chemistry C, 卷.121(35), 頁碼.19063-19068
09/2017

摘要

Electronic Optical and Magnetic Materials Energy (all) Physical and Theoretical Chemistry Surfaces Coatings and Films
TiO 2 nanotube-based heterostructures grafted with ZnO nanorods, Ag nanoparticles, or Pd nanodendrites were synthesized for photocatalytic H 2 O/CH 3 OH splitting and H 2 generation. Compared with P25 TiO 2 nanoparticles and bare TiO 2 nanotubes, these heterostructures, in particular, the one grafted with Pd nanodendrites, were found to present a markedly enhanced photocatalytic H 2 generation efficiency (net H 2 generation rate 143 μmol/h). Rather than the surface area of the photocatalysts, the lifetime (separation) of photogenerated carriers and, in particular, the surface plasmon resonance-stimulated carrier excitation dominated the number of total effective carriers. A power relationship with an exponent of 0.2 between the H 2 generation rate and the number of total photogenerated carriers was determined, which suggests that the number of effective carriers or the efficiency in H 2 O/CH 3 OH splitting might decay in an exponential way.

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