상세 보기
Dual-nitrogen coordination engineering enables porous carbon-confined Pt-FeN4 atomic interfaces for durable, low-Pt PEM fuel cells
- Xu, Xiaoqian;
- Xu, Nengneng;
- Cao, Qin;
- Guo, Yuheng;
- Li, Meng;
- ... Yang, Woochul;
- 외 6명
WEB OF SCIENCE
0SCOPUS
0초록
Designing low-Pt catalysts with both high intrinsic activity and long-term durability remains a central challenge for proton exchange membrane fuel cells (PEMFCs). Here, we report a dual‑nitrogen coordination strategy that simultaneously optimizes the electronic structure and structural stability of Pt/Fe-N-C catalysts. We precisely modulate the Fe-N coordination environment and electronic interaction between Pt and FeN4 sites, effectively increasing the proportion of pyridine nitrogen and metal nitrogen. This dual‑nitrogen design enables strong Pt-FeN4 interfacial coupling, optimizes the adsorption strength of reaction intermediates (OH*), promotes homogeneous metal dispersion, and creates a hierarchically porous carbon framework that enhances oxygen intermediates transport and active-site exposure. As a result, the optimized 40A-PtFe-CN catalyst achieves a half-wave potential of 0.923 V and a mass activity of 0.644 A mgPt−1 for the oxygen reduction reaction (ORR), exceeding that of commercial Pt/C. Moreover, the tailored electronic structure effectively suppresses H2O2 formation and mitigates Fe demetallation, delivering superior long-term durability. When used as the cathode in a PEMFC, it attains a peak power density of 1.51 W cm−2 at 80 °C. This work establishes a mechanistic framework in which nitrogen coordination engineering governs metal-support electronic coupling, offering a general approach for developing atomically precise, low-Pt catalysts with integrated activity and stability. © 2026
키워드
- 제목
- Dual-nitrogen coordination engineering enables porous carbon-confined Pt-FeN4 atomic interfaces for durable, low-Pt PEM fuel cells
- 저자
- Xu, Xiaoqian; Xu, Nengneng; Cao, Qin; Guo, Yuheng; Li, Meng; Liu, Yuhao; Li, Yawei; Liu, Guicheng; Yang, Woochul; Kim, Jong Min; Safari, Momo; Qiao, Jinli
- 발행일
- 2026-08
- 유형
- Article
- 권
- 541
- 페이지
- 1 ~ 10