Chinese Journal of Catalysis ›› 2025, Vol. 72: 118-129.DOI: 10.1016/S1872-2067(24)60277-9
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Tengfei Caoa, Quanlong Xub, Jun Zhangc, Shenggao Wanga, Tingmin Dia,*(), Quanrong Denga,*(
)
Received:
2024-12-09
Accepted:
2025-01-21
Online:
2025-05-18
Published:
2025-05-20
Contact:
*E-mail: ditingmin19@wit.edu.cn (T. Di), dqrwit@163.com (Q. Deng).
Supported by:
Tengfei Cao, Quanlong Xu, Jun Zhang, Shenggao Wang, Tingmin Di, Quanrong Deng. S-scheme g-C3N4/BiOBr heterojunction for efficient photocatalytic H2O2 production[J]. Chinese Journal of Catalysis, 2025, 72: 118-129.
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URL: https://www.cjcatal.com/EN/10.1016/S1872-2067(24)60277-9
Sample | ABET (m2 g-1) | PV (cm3 g-1) | APS (nm) |
---|---|---|---|
g-C3N4 | 96 | 0.51 | 21.2 |
BCN4 | 82 | 0.32 | 15.8 |
BiOBr | 15 | 0.07 | 15.5 |
Table 1 ABET, PV and APS data of g-C3N4, BCN4 and BiOBr samples.
Sample | ABET (m2 g-1) | PV (cm3 g-1) | APS (nm) |
---|---|---|---|
g-C3N4 | 96 | 0.51 | 21.2 |
BCN4 | 82 | 0.32 | 15.8 |
BiOBr | 15 | 0.07 | 15.5 |
Fig. 6. XPS survey spectra (a), high-resolution XPS spectra of C 1s (b), N 1s (c), Bi 4f (d), O 1s (e), and Br 3d (f) of g-C3N4, BCN4 and BiOBr samples.
Fig. 7. (a) Time courses of photocatalytic H2O2 production over the obtained photocatalysts under 300 W Xe lamp irradiation. (b) Comparison of H2O2 yields over samples g-C3N4, BCNX and BiOBr for 1 h illumination. (c) Recycling tests for photocatalytic H2O2 production on g-C3N4, BCN4 and BiOBr samples. (d) Photocatalytic degradation of H2O2 under illumination and oxygen-free condition.
Fig. 10. (a) Active species quenching experiments. (b) Band structures of g-C3N4 and BiOBr. EPR spectra of DMPO-?O2- in methanol (c) and DMPO-?OH in aqueous dispersions (d) of BiOBr, g-C3N4 and BCN4 samples.
Fig. 11. Electrostatic potential of g-C3N4 (001) surface (a) and BiOBr (001) surface (b). (c) Gibbs free energy differences (ΔG) for each stage in the two-step single-electron ORR process over g-C3N4 and BiOBr/g-C3N4 composite. Top view (d) and side view (e,f) of the charge density difference of BiOBr/g-C3N4 with an isosurface of 2 × 10-3 e ?-3. (g) Planar-averaged electron density difference Δρ(z) for BiOBr/g-C3N4. The yellow and cyan regions respectively represent the accumulation and depletion of charge.
Fig. 12. (a) The band structures of individual BiOBr and g-C3N4. (b) The formation of IEF at the g-C3N4/BiOBr interface. (c) Charge migration pathway over g-C3N4/BiOBr heterojunction in the photocatalytic H2O2 production process.
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