Chinese Journal of Catalysis ›› 2026, Vol. 84: 250-260.DOI: 10.1016/S1872-2067(25)64912-6
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Rongxing Chena,1, Yongkang Quana,1, Weilong Caia,b, Yun Hau Ngc,d, Jianying Huanga(
), Yuekun Laia,b(
)
Received:2025-08-30
Accepted:2025-09-27
Online:2026-05-18
Published:2026-04-16
Contact:
* E-mail: jyhuang@fzu.edu.cn (J. Huang),About author:1Contributed equally to this work.Rongxing Chen: Conceptualization, Investigation, Data curation, Writing-original draft. Yongkang Quan: Investigation, Methodology, Writing-review & editing. Jianying Huang: Funding acquisition, Project administration. Yuekun Lai: Supervision, Funding acquisition, Validation, Visualization, Writing-review & editing.
Supported by:Rongxing Chen, Yongkang Quan, Weilong Cai, Yun Hau Ng, Jianying Huang, Yuekun Lai. Synergistic band and electronic engineering in cyano-oxygen co-functionalized carbon nitride for efficient photocatalytic H2O2 synthesis[J]. Chinese Journal of Catalysis, 2026, 84: 250-260.
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URL: https://www.cjcatal.com/EN/10.1016/S1872-2067(25)64912-6
Fig. 1. (a) Schematic illustration for the synthesis of MCN-N15. TEM images of CN (b), MCN (c), and MCN-N15 (d). SEM images of CN (e), MCN (f), and MCN-N15 (g). (h-k) The elemental mapping (C, N, O, Na) of MCN-N15.
Fig. 2. XRD patterns (a), N2 adsorption-desorption isotherms (b), pore size distribution (c), FT-IR spectra (d), Solid-state 13C NMR spectra (e), XPS spectra (f), C 1s spectra (g), N 1s spectra (h), O 1s spectra (i) of CN, MCN, and MCN-N15.
Fig. 3. UV-vis absorption spectra (a), Tauc plots (b), PL spectra (c), TRPL spectra (d), transient photocurrent response (e), EIS (f), Valence band spectra (g), and band structures (h) of CN, MCN, MCN-N15.
Fig. 4. Photocatalytic hydrogen peroxide production performance (a) and corresponding reaction rate (b). (c) Cyclic stability test of MCN-N15. Photocatalytic performance of MCN-N15 under different atmospheres (d) and different sacrificial reagents (e). (f) On-site utilization of the produced H2O2 for degradation of methyl blue solution.
Fig. 5. (a) Scavenger effects on H2O2 yield. (b) The Koutecky-Levich diagrams of CN, MCN, MCN-N15. (c) EPR spectra of DMPO-?O2- signal of CN, MCN, and MCN-N15. (d) In-situ DRIFT spectra of MCN-N15 photocatalytic reaction.
Fig. 6. HOMO (a) and LUMO (b) of CN, MCN and MCN-N15. Surface electrostatic potential: CN (c), MCN (d), and MCN-N15 (e). (f) Gibbs free energy of H2O2 was generated on the CN, MCN and MCN-N15 optimization models, * represents the adsorption state.
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