CrOx modified Ru-Ni2P heterostructures regulate EG adsorption for formate electrosynthesis

Developing ethylene glycol oxidation reaction (EGOR) electrocatalysts with favorable activity and selectivity offers a mild route to valorize plastic waste and produce high-value chemicals. In this work, a novel three-dimensional nanostructured heterojunction electrocatalyst integrating Ru-doped Ni 2 P and CrO x anchored on nickel foam (denoted as Ru-Ni 2 P/CrO x ) was successfully designed and synthesized via hydrothermal treatment, ion exchange and calcination. This nanostructured heterojunction not only provides abundant active sites for catalytic reaction, but also optimizes alkali-deficient microenvironment, thereby accelerating the diffusion and enriching OH − toward the catalyst surface, promoting adsorption and activation of ethylene glycol (EG) and consequently accelerating EGOR kinetics. The resulting Ru-Ni 2 P/CrO x heterostructured catalyst exhibited favorable EGOR performance, achieving 100 mA cm −2 at an potential of 1.48 V in 1.0 M KOH + 0.3 M EG electrolyte and surpassing other comparative samples. We propose a sustainable route to convert waste polyethylene terephthalate into high value-added chemicals via modified electrocatalysts.

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Publication Details

Journal
Journal of Power Sources
Published
2026-10-07
DOI
https://doi.org/10.1016/j.jpowsour.2026.241670
Primary Topic
Electrocatalysts for Energy Conversion
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article
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article

CrOx modified Ru-Ni2P heterostructures regulate EG adsorption for formate electrosynthesis

Changkun Xia, Deli Jiang, Di Li, Lingmiao Fang et al.
Journal of Power Sources
Electrocatalysts for Energy Conversion
article

CrOx modified Ru-Ni2P heterostructures regulate EG adsorption for formate electrosynthesis

Changkun Xia, Deli Jiang, Di Li, Lingmiao Fang, Yingxue Cui, Jianjun Zhu, Cheng Ye, Zhanpeng Fu
article en

Abstract

Developing ethylene glycol oxidation reaction (EGOR) electrocatalysts with favorable activity and selectivity offers a mild route to valorize plastic waste and produce high-value chemicals. In this work, a novel three-dimensional nanostructured heterojunction electrocatalyst integrating Ru-doped Ni 2 P and CrO x anchored on nickel foam (denoted as Ru-Ni 2 P/CrO x ) was successfully designed and synthesized via hydrothermal treatment, ion exchange and calcination. This nanostructured heterojunction not only provides abundant active sites for catalytic reaction, but also optimizes alkali-deficient microenvironment, thereby accelerating the diffusion and enriching OH − toward the catalyst surface, promoting adsorption and activation of ethylene glycol (EG) and consequently accelerating EGOR kinetics. The resulting Ru-Ni 2 P/CrO x heterostructured catalyst exhibited favorable EGOR performance, achieving 100 mA cm −2 at an potential of 1.48 V in 1.0 M KOH + 0.3 M EG electrolyte and surpassing other comparative samples. We propose a sustainable route to convert waste polyethylene terephthalate into high value-added chemicals via modified electrocatalysts.

Journal of Power SourcesVol. 698
Jiangsu University (CN), Yangzhou University (CN)
Openalex Percentile: Top 33%
Electrocatalysts for Energy Conversion
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CrOx modified Ru-Ni2P heterostructures regulate EG adsorption for formate electrosynthesis — Changkun Xia, Deli Jiang, et al. · Journal of Power Sources (2026) | TGRS Research Map | TGRS