Chinese Journal of Catalysis ›› 2026, Vol. 86: 302-314.DOI: 10.1016/S1872-2067(26)65066-8
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Xu Yua,b,1, Han Tiana,1, Ziyi Yua, Fantao Konga, Min Wanga, Ruxiang Shena, Xiangzhi Cuia,b,c,*(
), Jianlin Shia,b
Received:2025-10-28
Accepted:2025-12-16
Online:2026-07-18
Published:2026-06-12
Contact:
*E-mail: cuixz@mail.sic.ac.cn (X. Cui).
About author:1Contributed equally to this work.
Supported by:Xu Yu, Han Tian, Ziyi Yu, Fantao Kong, Min Wang, Ruxiang Shen, Xiangzhi Cui, Jianlin Shi. WO2.72-modulated Ru cluster boosting dual-site adsorption for efficient and CO-resistant anion exchange membrane fuel cells[J]. Chinese Journal of Catalysis, 2026, 86: 302-314.
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URL: https://www.cjcatal.com/EN/10.1016/S1872-2067(26)65066-8
Fig. 2. XRD (a), Raman (b), and UV-vis-NIR (c) spectra of Ru-WO2.72-NC. High-resolution XPS spectra of Ru 3p (d), W 4f (e), and O 1s (f) of Ru-NC, WO2.72-NC and Ru-WO2.72-NC. (g) EPR spectra of the as-prepared samples. Ru K-edge XANES (h), EXAFS (i), and WT-EXAFS (j) spectra of the samples.
Fig. 3. HOR polarization curves (a), Tafel plots (b), and LSV curves (c) at varying rotating speeds (inset: K-L plots) for as-prepared catalysts and Pt-C. (d) Comparisons of E1/2, current densities and mass-normalized performance of Ru-WO2.72-NC (red), Ru-NC (blue) and Pt-C (green). (e) Relative current-time chronoamperometry curves of different catalysts at 0.1 V. (f) LSV curves of Ru-WO2.72-NC and Pt-C before and after ADT. (g) Polarization and power density curves of AEMFCs. (h) Mass current density and cost accounting of the catalysts in AEMFCs.
Fig. 4. LSV curves in pure H2, CO/H2 and after ADT in CO/H2 of Ru-WO2.72-NC (a) and Pt-C (b). (c) i-t curves of different catalysts in CO/H2 atmosphere. Polarization and power density curves of AEMFCs in 50 ppm CO/H2 anodic atmosphere (d) and corresponding PPD decay histograms (e). (g) CO-TPD of the samples. (h)Background-corrected VB spectra of Ru-WO2.72-NC and Pt-C. (i) CO-stripping voltammograms of Ru-WO2.72-NC and Pt-C.
Fig. 5. H2-TPD spectra (a) and zeta potential (b) of as-prepared catalysts. In-situ electrochemical Raman spectra on Ru-WO2.72-NC surfaces during HOR in the range of 1000-1800 cm-1 (c) and 3000-3800 cm-1 (d). (e) The reaction pathways of Ru-WO2.72-NC and Ru for alkaline HOR. (f) Schematic representation of the alkaline HOR mechanism for the proposed Ru-WO2.72-NC catalyst.
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