Citation:
WANG Ya-Fang, LI Li-Ping, HUANG Xin-Song, LI Guang-She. A New Ti3+-assisted Synthesis of Pd-supported TiO2 Nanomaterial with Enhanced Photocatalytic Activity for Hydrogen Generation and Methyl Orange Degradation[J]. Chinese Journal of Structural Chemistry,
;2015, 34(8): 1203-1216.
doi:
10.14102/j.cnki.0254-5861.2011-0669
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Owing to the merits of high catalytic activity, Pd-supported materials have received extensive attention. However, those materials always require complex and high-cost synthetic processes such as high-temperature calcination or H2 reduction, which seriously hinder their wide applications. In this work, a novel Pd reduction method was developed for Pd-supported TiO2 catalysts, in which the Pd2+ ions were partly reduced and homogeneously loaded on the surface of 8 nm TiO2 with the assistance of pre-produced surface Ti3+ ions. This facile preparation is calcination-free and cost-low. The excellent catalysts can produce H2 33 mmol/g/h under UV-vis light irradiation, and degrade nearly 10% methyl orange in 1 h visible-light irradiation, which is much higher than that of unloaded TiO2 or Pd/TiO2 prepared by traditional high-temperature calcination methods. Moreover, the resulting Pd-supported TiO2 nano-catalysts are also effective for colorless phenol degradation under visible-light. The reasons for these superior activities can be assigned to the co-existence of Pd0 and Pd2+ on the surface of TiO2 nanoparticles, which is closely related to the calcination-free synthetic process. UV-Vis absorbance spectra show that the obtained 0.53Pd/TiO2 is visible-light-driven and nitrogen physisorption isotherms indicate a high specific surface area of 203 m2/g. The preparation method reported herein may provide hints for obtaining other high photocatalytic activity Pd-based supported catalysts for hydrogen generation and methylene orange degradation.
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Keywords:
- Pd-supported,
- TiO2,
- Ti3+,
- photocatalysis
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