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Oxygen vacancies mediated ultrathin Bi4O5Br2 nanosheets as efficient piezocatalyst for synthesis of H2O2 from pure water

04.17.24 | Dalian Institute of Chemical Physics, Chinese Academy Sciences

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As an important chemical raw material, hydrogen peroxide (H 2 O 2 ) is widely applied in various aspects of industry and life. The industrial anthraquinone method for H 2 O 2 production has the serious flaws, such as high pollution and energy consumption. By using ubiquitous mechanical energy, piezocatalytic H 2 O 2 evolution has been proven as a promising strategy, but its progress is hindered by unsatisfied energy conversion efficiency.

Bi 4 O 5 Br 2 is regarded as a highly attractive photocatalytic material due to its unique sandwich structure, excellent chemical stability, good visible light capture ability and suitable band structure. Aspired by its non-centrosymmetric crystal structure, piezoelectric performance has begun to enter the vision of researchers recently. However, its potential as an efficient piezocatalyst is far from being exploited, especially the impacts of defects on piezocatalysis and piezocatalytic H 2 O 2 production over Bi 4 O 5 Br 2 remains scanty. Thus, mechanical energy-driven piezocatalysis provides a promising method for H 2 O 2 synthesis from pure water with great attraction.

Recently, a research group led by Prof. Hongwei Huang from China University of Geosciences reported outstanding piezocatalytic H 2 O 2 evolution performance that was achieved over ultrathin Bi 4 O 5 Br 2 nanosheets with appropriate oxygen vacancies, and disclosed the mechanism that thin structure and oxygen vacancies collectively enhance the piezocatalytic activity. The results were published in the Chinese Journal of Catalysis (https://doi.org/10.1016/S1872-2067(23)64591-7).

Ultrathin Bi 4 O 5 Br 2 nanosheets with controllable oxygen vacancy concentrations are synthesized by a one-step solvothermal method by tuning the water to ethylene glycol ratio. Experiments and theoretical calculations have shown that Bi 4 O 5 Br 2 with appropriate oxygen vacancies exhibits dramatic performance for piezocatalytic H 2 O 2 production. On the one hand, oxygen vacancies and thin structure largely increase the piezoelectric properties and piezoelectric potential of Bi 4 O 5 Br 2 , which improve the separation and transfer of piezoinduced charges. On the other hand, oxygen vacancies promote oxygen adsorption and activation on the surface of Bi 4 O 5 Br 2 , and lead to constantly decreased Gibbs free energy of the reaction pathway. Therefore, the piezocatalytic H 2 O 2 production performance of Bi 4 O 5 Br 2 with appropriate oxygen vacancies is higher than that of other commonly used piezocatalysts.

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This work was jointly supported by the National Natural Science Foundation of China (No. 52272244 and 51972288), the Fundamental Research Funds for the Central Universities (2652022202).

About the J ournal

Chinese Journal of Catalysis is co-sponsored by Dalian Institute of Chemical Physics, Chinese Academy of Sciences and Chinese Chemical Society, and it is currently published by Elsevier group. This monthly journal publishes in English timely contributions of original and rigorously reviewed manuscripts covering all areas of catalysis. The journal publishes Reviews, Accounts, Communications, Articles, Highlights, Perspectives, and Viewpoints of highly scientific values that help understanding and defining of new concepts in both fundamental issues and practical applications of catalysis. Chinese Journal of Catalysis ranks among the top one journals in Applied Chemistry with a current SCI impact factor of 16.5. The Editors-in-Chief are Profs. Can Li and Tao Zhang.

At Elsevier http://www.journals.elsevier.com/chinese-journal-of-catalysis

Manuscript submission https://mc03.manuscriptcentral.com/cjcatal

Chinese Journal of Catalysis

10.1016/S1872-2067(23)64591-7

Oxygen vacancies mediated ultrathin Bi4O5Br2 nanosheets for efficient piezocatalytic peroxide hydrogen generation in pure water

12-Feb-2024

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Article Information

Contact Information

Fan He
Dalian Institute of Chemical Physics, Chinese Academy Sciences
hef197@dicp.ac.cn

How to Cite This Article

APA:
Dalian Institute of Chemical Physics, Chinese Academy Sciences. (2024, April 17). Oxygen vacancies mediated ultrathin Bi4O5Br2 nanosheets as efficient piezocatalyst for synthesis of H2O2 from pure water. Brightsurf News. https://www.brightsurf.com/news/LPE09KK8/oxygen-vacancies-mediated-ultrathin-bi4o5br2-nanosheets-as-efficient-piezocatalyst-for-synthesis-of-h2o2-from-pure-water.html
MLA:
"Oxygen vacancies mediated ultrathin Bi4O5Br2 nanosheets as efficient piezocatalyst for synthesis of H2O2 from pure water." Brightsurf News, Apr. 17 2024, https://www.brightsurf.com/news/LPE09KK8/oxygen-vacancies-mediated-ultrathin-bi4o5br2-nanosheets-as-efficient-piezocatalyst-for-synthesis-of-h2o2-from-pure-water.html.