Chinese Journal of Catalysis ›› 2026, Vol. 88: 247-258.DOI: 10.1016/S1872-2067(26)65110-8
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Yun Huanga,b, Qi Chena,b, Yueling Chena,b, Zefeng Yanga,b, Jionghua Wua,c,*(
), Jimmy C. Yub,d,*(
), Ling Wua,b,*(
)
Received:2025-12-17
Accepted:2026-02-27
Online:2026-09-18
Published:2026-09-05
Supported by:Yun Huang, Qi Chen, Yueling Chen, Zefeng Yang, Jionghua Wu, Jimmy C. Yu, Ling Wu. Effective generation of active hydrogen species for nitrogen fixation on Pt/DUT-67(Zr)[J]. Chinese Journal of Catalysis, 2026, 88: 247-258.
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URL: https://www.cjcatal.com/EN/10.1016/S1872-2067(26)65110-8
Fig. 1. (A,B) SEM images, (C) EDS elemental mappings (C: red, O: green, Zr: cyan, S: yellow, Cl: blue, Pt: pink), (D,E) AC-HAADF-STEM images of 5%Pt/DUT-67.
Fig. 2. (A) O 1s, (B) EPR, (C) Zr 3d, (D) S 2p XPS spectra of DUT-67 and 5%Pt/DUT-67. (E) Pt 4f XPS spectrum of 5%Pt/DUT-67. (F) Relative content of Pt with different valence states.
Fig. 4. (A) UV-Vis DRS spectra, (B) Tauc plots, (C) Band structure diagram, (D) Valence band XPS spectra of DUT-67 and 5%Pt/DUT-67. (E) N2 adsorption-desorption isotherms. (F) Pore size distribution curves.
Fig. 5. (A) Photocatalytic nitrogen fixation activity of various catalysts. (B) Eight cyclic stability tests of 5%Pt/DUT-67. (C) Time-dependent ammonia yield (0-8 h). (D) Activity of 5%Pt/DUT-67 under different reaction atmospheres. (E) 1H NMR spectra of NH4+ from 14N2 and 15N2. (F) GC signals of N2 and O2. (G) Activity comparison with reported catalysts.
Fig. 6. A) In-situ DRIFT spectra under dark atmosphere, (B) In-situ DRIFT spectra under irradiation, (C) PL spectra, (D) TRPL spectra, (E) Transient photocurrent curves, (F) EIS Nyquist plots.
Fig. 7. (A) Contact angle results of DUT-67 and 5%Pt/DUT-67. (B) Catalytic activity in N2-H2 mixed atmosphere. (C) Activity after adding TBA radical scavenger. (D) Gibbs free energy profiles of different reaction pathways. (E) Gibbs free energy for photocatalytic nitrogen fixation.
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