Q1 2026

Plasma-modified flower-like CuFe–Ni₃S₂/Nickel foam heterostructure as a robust bifunctional electrocatalyst for high-efficiency overall water splitting

Yongjun Shen · Yin Chen · Shuaikang Fang · Kun Feng · Neng Tao
10.25259/ajc_642_2025 387 المشاهدات 1 الاقتباسات
1
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387
المشاهدات
الملخص


Electrochemical water splitting is an attractive approach to producing zero-carbon hydrogen and is considered to be the core of developing a carbon-neutral economy. High-efficiency nonprecious electrocatalysts are required to lower the overpotential of both cathodic hydrogen evolution reaction (HER) and anodic oxygen evolution reaction (OER). Here, a PA@CuFe-Ni₃S₂/NF electrocatalyst with flower-like nanosheets was fabricated by a successive hydrothermal and plasma-assisted method. Benefiting from the optimized electronic structure and increased exposure of active sites originated from CuFe doping and plasma treatment, the optimal PA@CuFe-Ni₃S₂/NF electrocatalyst shows a low overpotential of 125 mV and 147 mV at 10 mA cm
−2
for alkaline HER and OER, respectively, which are among the best values for transition-metal-based catalysts reported to date. Most significantly, when used as a bifunctional electrocatalyst for overall water splitting, the optimal PA@CuFe-Ni₃S₂/NF requires only 1.575 V to reach the current density of 10 mA cm
-2
, making PA@CuFe-Ni₃S₂/NF one of the most effective earth-abundant electrocatalysts for overall water splitting, with performance comparable to precious metal catalysts of Pt/C||RuO
2
. Therefore, this work offers a viable strategy for fabricating bifunctional water splitting electrocatalysts for the realistic large-scale production of zero-carbon hydrogen.

الاستشهاد بهذا المقال (APA)
Yongjun, S., Yin, C., Shuaikang, F., Kun, F., Neng, T. (2026). Plasma-modified flower-like CuFe–Ni₃S₂/Nickel foam heterostructure as a robust bifunctional electrocatalyst for high-efficiency overall water splitting. Arabian Journal of Chemistry. https://doi.org/10.25259/ajc_642_2025
أبحاث ذات صلة
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الوصول
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الرقم الدولي ISSN 1878-5352
الربعية Q1
درجة المؤشر القياس العربي 100
التخصص Natural Sciences
الناشر King Saud University / Elsevier
الدولة 🇸🇦 Saudi Arabia
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المؤلفون
تفاصيل النشر
السنة 2026
اللغة English
أُضيف في 24 Jul 2026