4.7 Article

Correlation between band alignment and enhanced photocatalysis: a case study with anatase/TiO2(B) nanotube heterojunction

Journal

DALTON TRANSACTIONS
Volume 44, Issue 29, Pages 13331-13339

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c5dt01860a

Keywords

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Funding

  1. National Natural Science Foundation of China [51072032, 51102001, 51372036, 91233204]
  2. Key Project of Chinese Ministry of Education [113020A]
  3. China Postdoctoral Science Foundation [2014M551156]
  4. Specialized Research Fund for the Doctoral Program of Higher Education [20120043110002]
  5. National Basic Research Program [2012CB933703]
  6. 111 project [B13013]
  7. International Science and Technology Cooperation Program of China [2013DFG50150]

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has long been known that efficient interfacial charge transfer between different phases of TiO2 is beneficial for enhanced photocatalysis. However, there has been considerable debate over the direction of the charge transfer across the interface of the different TiO2 phases. In this work, we study the case of TiO2 with a novel anatase/TiO2(B) heterojunction (ABHJ), wherein charge carrier transfer across the heterojunction interface is intensively investigated. The ABHJ is prepared by a two-step alkaline hydrothermal route and features nanotubes with a large surface area. Comprehensive analysis including UV-Vis-DRS, XPS, Mott-Schottky measurements, EPR and transient photovoltage techniques provides evidence for a type II band alignment in the ABHJ and migration of the photogenerated electrons from anatase to TiO2(B), which could effectively inhibit the recombination rate of photo-induced electronhole pairs. Photocatalytic tests demonstrate that the as-obtained ABHJ shows higher activity than both the single phase and P25, not only for hydrogen production, but also for the photodegradation of gaseous acetaldehyde, which is due to the synergistic effect between an efficient charge separation at the interface and a high surface area.

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