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Nitrogen-Doped Carbon Coated Zn0.17Co0.83P as a Highly Active and Stable Electrocatalyst for Hydrogen Evolution

作者:Guo‐Ping Shen, Xiaomei Men, Sijia Guo, Na Xu, Bin Dong · 发表于:Catalysts · 年份:2025 · DOI:10.3390/catal15111071 · 研究领域:Electrocatalysts for Energy Conversion、Metalloenzymes and iron-sulfur proteins、Ammonia Synthesis and Nitrogen Reduction

Zeolitic imidazolate frameworks (ZIFs) can provide fascinating stereo morphology and tunable metal active sites, which plays an important role in the synthesis of various catalytic materials. However, it is still a problem to make use of these advantages to design efficient hydrogen evolution reaction (HER) catalysts. Herein, we use covalent coordination strategy to synthesize bimetallic CoxZn1−x(2-MeIM)2 precursors with regular dodecahedral structures for providing uniform active sites and stable carbon skeleton. Furthermore, the ratio of Co and Zn atoms was optimized to balance the electron density and give full play to the synergistic catalytic effect. And then, the subsequent high temperature annealing process is used to construct the amorphous carbon layer, which can improve the overall stability of the material. The gas phase phosphating process realizes the transformation from ZIF material to metal phosphide resulting in enhanced hydrogen evolution activity. Finally, the optimized amorphous nitrogen-doped carbon (NC)-coated Zinc-doped cobalt phosphide (Zn0.17Co0.83P@NC) requires only 237.60 mV to reach the current density of 10 mA cm−2 in alkaline medium, which is 223.22 mV lower than that of CoP, and has a stability of up to 18 h. This work provides a reference for the rational design of efficient and stable compound electrocatalysts for alkaline hydrogen evolution based on the bimetallic ZIF as a precursor.