Promoted Hydrogen Peroxide Production from Pure Water on g‐C3N4 with Nitrogen Defects Constructed through Solvent‐Precursor Interactions: Exploring a Complex Story in Piezo‐Photocatalysis

Author:

Minh Phan Pham Duc12,Nguyen Duc‐Viet3,Nguyen Minh Chien4,Anh Nguyen Hoai12,Toan Huynh Phuoc12,Ly Pho Phuong12,Nguyen Ngoc Linh56,Van Nguyen Tiep78,Pham Minh‐Thuan91011,Ung Thuy Dieu Thi12,Bich Do Danh13,Hue Pham Thu14,Hue Nguyen Thi Ngoc14,Dang Van‐Han12,Yu Woo Jong4,Hur Seung Hyun3,Nguyen Quang Hung1516,Tuyen Luu Anh14,Vuong Hoai‐Thanh217ORCID

Affiliation:

1. Faculty of Chemical Engineering Ho Chi Minh City University of Technology (HCMUT) 268 Ly Thuong Kiet, District 10 Ho Chi Minh City 700000 Vietnam

2. Vietnam National University Ho Chi Minh City (VNU‐HCM) Linh Trung Ward, Thu Duc City Ho Chi Minh City 700000 Vietnam

3. School of Chemical Engineering University of Ulsan Ulsan 44610 South Korea

4. Department of Electrical and Computer Engineering Sungkyunkwan University Suwon 16419 South Korea

5. Faculty of Materials Science and Engineering Phenikaa University Ha Noi 12116 Vietnam

6. Phenikaa Research and Technology Institute (PRATI) A&A Green Phoenix Group JSC 167 Hoang Ngan, Trung Hoa, Cau Giay Ha Noi 11313 Vietnam

7. Institute for Nuclear Research Moscow Reg Dubna 141980 Russia

8. Institute of Physics Vietnam Academy of Science and Technology Hanoi City 100000 Vietnam

9. Center for Environmental Toxin and Emerging‐Contaminant Research Cheng Shiu University Kaohsiung 83347 Taiwan

10. Institute of Environmental Toxin and Emerging‐Contaminant Cheng Shiu University Kaohsiung 833301 Taiwan

11. Super Micro Mass Research and Technology Center Cheng Shiu University Kaohsiung 833301 Taiwan

12. Institute of Material Science Vietnam Academy of Science and Technology Hanoi 100000 Vietnam

13. Department of Physics Hanoi National University of Education 136 Xuan Thuy Ha Noi 100000 Vietnam

14. Center for Nuclear Technologies Vietnam Atomic Energy Institute Ho Chi Minh City 700000 Vietnam

15. Insitute of Fundamental and Applied Sciences Duy Tan University Ho Chi Minh City 700000 Vietnam

16. Faculty of Natural Sciences Duy Tan University Da Nang City 550000 Vietnam

17. Department of Chemistry and Biochemistry University of California Santa Barbara (UCSB) Santa Barbara CA 93106 USA

Abstract

AbstractHydrogen peroxide (H2O2) production via oxygen (O2) reduction reaction (ORR) in pure water (H2O) through graphitic carbon nitrides (g‐C3N4)‐based piezo‐photocatalysts is an exciting approach in many current studies. However, the low Lewis‐acid properties of g‐C3N4 limited the catalytic performance because of the low O2 adsorption efficacy. To overcome this challenge, the interaction of g‐C3N4 precursors with various solvents are utilized to synthesize g‐C3N4, possessing multiple nitrogen‐vacant species via thermal shocking polymerization. These results suggest that the lack of nitrogen in g‐C3N4 and the incident introduction of oxygen‐functional groups enhance the Lewis acid‐base interactions and polarize the g‐C3N4 lattices, leading to the enormous enhancement. Furthermore, the catalytic mechanisms are thoroughly studied, with the formation of H2O2 proceeding via radical and water oxidation pathways, in which the roles of light and ultrasound are carefully investigated. Thus, these findings not only reinforce the potential view of metal‐free photocatalysts, accelerating the understanding of g‐C3N4 working principles to generate H2O2 based on the oxygen reduction and water oxidation reactions, but also propose a facile one‐step way for fabricating highly efficient and scalable photocatalysts to produce H2O2 without using sacrificial agents, pushing the practical application of in situ solar H2O2 toward real‐world scenarios.

Funder

National Foundation for Science and Technology Development

Publisher

Wiley

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