Literature DB >> 33801646

Charge Carrier Processes and Optical Properties in TiO2 and TiO2-Based Heterojunction Photocatalysts: A Review.

Stefano Lettieri1, Michele Pavone2, Ambra Fioravanti3, Luigi Santamaria Amato4, Pasqualino Maddalena5.   

Abstract

Photocatalysis based technologies have a key role in addressing important challenges of the ecological transition, such as environment remediation and conversion of renewable energies. Photocatalysts can in fact be used in hydrogen (H2) production (e.g., via water splitting or photo-reforming of organic substrates), CO2 reduction, pollution mitigation and water or air remediation via oxidation (photodegradation) of pollutants. Titanium dioxide (TiO2) is a "benchmark" photocatalyst, thanks to many favorable characteristics. We here review the basic knowledge on the charge carrier processes that define the optical and photophysical properties of intrinsic TiO2. We describe the main characteristics and advantages of TiO2 as photocatalyst, followed by a summary of historical facts about its application. Next, the dynamics of photogenerated electrons and holes is reviewed, including energy levels and trapping states, charge separation and charge recombination. A section on optical absorption and optical properties follows, including a discussion on TiO2 photoluminescence and on the effect of molecular oxygen (O2) on radiative recombination. We next summarize the elementary photocatalytic processes in aqueous solution, including the photogeneration of reactive oxygen species (ROS) and the hydrogen evolution reaction. We pinpoint the TiO2 limitations and possible ways to overcome them by discussing some of the "hottest" research trends toward solar hydrogen production, which are classified in two categories: (1) approaches based on the use of engineered TiO2 without any cocatalysts. Discussed topics are highly-reduced "black TiO2", grey and colored TiO2, surface-engineered anatase nanocrystals; (2) strategies based on heterojunction photocatalysts, where TiO2 is electronically coupled with a different material acting as cocatalyst or as sensitizer. Examples discussed include TiO2 composites or heterostructures with metals (e.g., Pt-TiO2, Au-TiO2), with other metal oxides (e.g., Cu2O, NiO, etc.), direct Z-scheme heterojunctions with g-C3N4 (graphitic carbon nitride) and dye-sensitized TiO2.

Entities:  

Keywords:  O2 sensing; absorption; charge lifetimes; charge transfer; composite photocatalyst; ecological transition; heterostructures; hydrogen production; photocatalysis; photoluminescence

Year:  2021        PMID: 33801646      PMCID: PMC8036967          DOI: 10.3390/ma14071645

Source DB:  PubMed          Journal:  Materials (Basel)        ISSN: 1996-1944            Impact factor:   3.623


  92 in total

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3.  Direct evidence of plasmon enhancement on photocatalytic hydrogen generation over Au/Pt-decorated TiO2 nanofibers.

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Journal:  Nanoscale       Date:  2014-05-21       Impact factor: 7.790

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Journal:  Phys Rev B Condens Matter       Date:  1995-03-15

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Authors:  Qingge Zhai; Shunji Xie; Wenqing Fan; Qinghong Zhang; Yu Wang; Weiping Deng; Ye Wang
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Journal:  J Phys Chem B       Date:  2005-04-07       Impact factor: 2.991

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Authors:  Xiaoyang Pan; Min-Quan Yang; Xianzhi Fu; Nan Zhang; Yi-Jun Xu
Journal:  Nanoscale       Date:  2013-03-26       Impact factor: 7.790

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Authors:  D Scott Bohle; Carla J Spina
Journal:  J Am Chem Soc       Date:  2009-04-01       Impact factor: 15.419

Review 10.  1D Titanium Dioxide: Achievements in Chemical Sensing.

Authors:  Navpreet Kaur; Mandeep Singh; Abderrahim Moumen; Giorgio Duina; Elisabetta Comini
Journal:  Materials (Basel)       Date:  2020-07-03       Impact factor: 3.623

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  6 in total

1.  Broadening the Action Spectrum of TiO2-Based Photocatalysts to Visible Region by Substituting Platinum with Copper.

Authors:  Andrey A Saraev; Anna Yu Kurenkova; Evgeny Yu Gerasimov; Ekaterina A Kozlova
Journal:  Nanomaterials (Basel)       Date:  2022-05-07       Impact factor: 5.719

2.  Visible Light Trapping against Charge Recombination in FeOx-TiO2 Photonic Crystal Photocatalysts.

Authors:  Martha Pylarinou; Alexia Toumazatou; Elias Sakellis; Evangelia Xenogiannopoulou; Spiros Gardelis; Nikos Boukos; Athanasios Dimoulas; Vlassis Likodimos
Journal:  Materials (Basel)       Date:  2021-11-23       Impact factor: 3.623

3.  TiO2-Based Nanostructures, Composites and Hybrid Photocatalysts.

Authors:  Stefano Lettieri; Michele Pavone
Journal:  Materials (Basel)       Date:  2022-02-09       Impact factor: 3.623

4.  WSSe Nanocomposites for Enhanced Photocatalytic Hydrogen Evolution and Methylene Blue Removal under Visible-Light Irradiation.

Authors:  Tsung-Mo Tien; Yu-Jen Chung; Chen-Tang Huang; Edward L Chen
Journal:  Materials (Basel)       Date:  2022-08-16       Impact factor: 3.748

5.  Stimulated generation of photobiogas by morphologically tuned nanostructured ZnO and ZnO/TiO2.

Authors:  Omar Mbrouk; H Hafez; Sylwia Mozia; A M Othman; M S A Abdel Mottaleb
Journal:  BMC Chem       Date:  2022-10-03

6.  Synthesis and Characterization of Anatase TiO2 Microspheres Self-Assembled by Ultrathin Nanosheets.

Authors:  Jian Di; Haibo Yan; Zhuoyu Liu; Xing Ding
Journal:  Materials (Basel)       Date:  2021-05-27       Impact factor: 3.623

  6 in total

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