Directed construction of high-stability PtPd alloys for methanol electrooxidation

Direct methanol fuel cells (DMFCs) suffer from the high Nost, CO poisoning, and insufficient durability of Pt-based anodes. Alloying Pt with Pd offers a promising route to enhance CO tolerance, yet the stability of PtPd nanoparticles under operating conditions remains a critical challenge. Here, we report composition-controlled Pt x Pd y (x + y = 6) alloy catalysts supported on ZIF-8-derived nitrogen-doped carbon (NC). The equimolar Pt 3 Pd 3 /NC exhibits the smallest particle size (1.94 nm), highest metallic Pt 0 (73.1%) and Pd 0 (79.8%), and strong electron donation from graphitic-N in NC. This catalyst delivers an exceptional mass activity of 4892.0 mA mg −1 metal for methanol oxidation in alkaline media, with 93.3% retention after 500 cycles and a retained current density of 2156.4 mA mg −1 metal after 10,800 s. In situ surface-enhanced Raman spectroscopy reveals a non-CO (formate) pathway, completely avoiding CO poisoning. This work establishes a composition-structure-activity-stability relationship for PtPd alloys and provides a rational design strategy for high-performance, durable DMFC anodes.

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Journal
International Journal of Hydrogen Energy
Published
2026-09-19
DOI
https://doi.org/10.1016/j.ijhydene.2026.157588
Primary Topic
Electrocatalysts for Energy Conversion
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article
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Directed construction of high-stability PtPd alloys for methanol electrooxidation

Hui Li, HaiXiong Shi, ShouJun Lai, HongFei Yun
International Journal of Hydrogen Energy
Electrocatalysts for Energy Conversion
article

Directed construction of high-stability PtPd alloys for methanol electrooxidation

Hui Li, HaiXiong Shi, ShouJun Lai, HongFei Yun
article en

Abstract

Direct methanol fuel cells (DMFCs) suffer from the high Nost, CO poisoning, and insufficient durability of Pt-based anodes. Alloying Pt with Pd offers a promising route to enhance CO tolerance, yet the stability of PtPd nanoparticles under operating conditions remains a critical challenge. Here, we report composition-controlled Pt x Pd y (x + y = 6) alloy catalysts supported on ZIF-8-derived nitrogen-doped carbon (NC). The equimolar Pt 3 Pd 3 /NC exhibits the smallest particle size (1.94 nm), highest metallic Pt 0 (73.1%) and Pd 0 (79.8%), and strong electron donation from graphitic-N in NC. This catalyst delivers an exceptional mass activity of 4892.0 mA mg −1 metal for methanol oxidation in alkaline media, with 93.3% retention after 500 cycles and a retained current density of 2156.4 mA mg −1 metal after 10,800 s. In situ surface-enhanced Raman spectroscopy reveals a non-CO (formate) pathway, completely avoiding CO poisoning. This work establishes a composition-structure-activity-stability relationship for PtPd alloys and provides a rational design strategy for high-performance, durable DMFC anodes.

International Journal of Hydrogen EnergyVol. 276
Lanzhou University (CN)
Openalex Percentile: Top 29%
Electrocatalysts for Energy Conversion
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Directed construction of high-stability PtPd alloys for methanol electrooxidation — Hui Li, HaiXiong Shi, et al. · International Journal of Hydrogen Energy (2026) | TGRS Research Map | TGRS