Low-melting point metals facilitate synthesis of Pt-based intermetallic nanocrystals

Yan Wan , Mo Zhang , Yangming Lin

Front. Energy ›› 2024, Vol. 18 ›› Issue (6) : 727 -729.

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Front. Energy ›› 2024, Vol. 18 ›› Issue (6) : 727 -729. DOI: 10.1007/s11708-024-0957-1
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Low-melting point metals facilitate synthesis of Pt-based intermetallic nanocrystals

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Yan Wan, Mo Zhang, Yangming Lin. Low-melting point metals facilitate synthesis of Pt-based intermetallic nanocrystals. Front. Energy, 2024, 18(6): 727-729 DOI:10.1007/s11708-024-0957-1

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References

[1]

Zhou M, Li C, Fang J. Noble-metal based random alloy and intermetallic nanocrystals: Syntheses and applications. Chemical Reviews, 2021, 121(2): 736–795

[2]

LiangJWanYLvH, . Metal bond strength regulation enables large-scale synthesis of intermetallic nanocrystals for practical fuel cells. Nature Materials, 2024,

[3]

Zeng Y, Liang J, Li C. . Regulating catalytic properties and thermal stability of Pt and PtCo intermetallic fuel-cell catalysts via strong coupling effects between single-metal site-rich carbon and Pt. Journal of the American Chemical Society, 2023, 145(32): 17643–17655

[4]

Tang M, Zhang S, Chen S. Pt utilization in proton exchange membrane fuel cells: Structure impacting factors and mechanistic insights. Chemical Society Reviews, 2022, 51(4): 1529–1546

[5]

Yang C, Wang L, Yin P. . Sulfur-anchoring synthesis of platinum intermetallic nanoparticle catalysts for fuel cells. Science, 2021, 374(6566): 459–464

[6]

Chong L, Wen J, Kubal J. . Ultralow-loading platinum-cobalt fuel cell catalysts derived from imidazolate frameworks. Science, 2018, 362(6420): 1276–1281

[7]

Cheng Q, Yang S, Fu C. . High-loaded sub-6 nm Pt1Co1 intermetallic compounds with high-efficient performance expression in PEMFCs. Energy & Environmental Science, 2022, 15(1): 278–286

[8]

Li J, Sharma S, Liu X. . Hard-magnet L10-CoPt nanoparticles advance fuel cell catalysis. Joule, 2019, 3(1): 124–135

[9]

Zhao Z, Hossain M, Xu C. . Tailoring a three-phase microenvironment for high-performance oxygen reduction reaction in proton exchange membrane fuel cells. Matter, 2020, 3(5): 1774–1790

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