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首页> 外文期刊>Catalysis science & technology >Dual tuning of nickel sulfide nanoflake array electrocatalyst through nitrogen doping and carbon coating for efficient and stable water splitting
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Dual tuning of nickel sulfide nanoflake array electrocatalyst through nitrogen doping and carbon coating for efficient and stable water splitting

机译:双调优的硫化镍nanoflake数组通过氮掺杂和electrocatalyst碳涂层有效和稳定的水分裂

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摘要

Earth-abundant transition metal sulfide (TMS) electrocatalysts for water splitting have received extensive attention due to their low cost and bifunctional application in the hydrogen evolution reaction (HER) and oxygen evolution reaction (OER). Recently, introducing a nitrogen anion into 3d TMSs (N-TMSs) has been demonstrated as an effective common strategy to further improve their catalytic activity by precisely manipulating their electronic structure. However, the enhancement in the activity of the N-TMS catalysts sacrifices their stability. Herein, we present a novel strategy of dual tuning to simultaneously improve the activity and stability of TMS catalysts through nitrogen doping and carbon coating, using 3D nitrogen-doped and carbon-coated Ni3S2 nanoflake arrays grown on nickel foam (N-Ni3S2@C/NF) as a typical material. The as-prepared catalyst exhibited excellent activity for both HER and OER in 1 M KOH, as well as distinguished long-term durability (up to 140 h) even at a large current density of similar to 300 mA cm(-2). The systematic experimental results reveal that the introduction of a N dopant would be beneficial for accelerating charge transfer, increasing active sites and improving intrinsic activity, whereas the amorphous carbon shell is primarily responsible for the corrosion resistance and structure stability. Finally, the electrolytic cell which consisted of N-Ni3S2@C/NF as both the cathode and anode only needs a very low voltage of 1.57 V to deliver a current density of 10 mA cm(-2), which is comparable to that of its Pt/C||IrO2 counterpart. This work provides a new strategy to design a high-performance bifunctional water-splitting electrocatalyst with both excellent catalytic activity and stability.
机译:地球上充足的过渡金属硫化物(TMS)electrocatalysts水分裂收到广泛关注由于其低成本和氢双功能的应用程序进化进化(她)和氧气的反应反应(OER)。阴离子在三维经颅磁刺激(N-TMSs)已经证明作为一个有效的共同战略进一步通过精确地提高其催化活性操纵他们的电子结构。N-TMS的活动的增强催化剂牺牲他们的稳定性。小说的双重优化战略同时提高活性和稳定性通过氮掺杂和经颅磁刺激的催化剂使用3 d nitrogen-doped和碳涂层碳涂层Ni3S2 nanoflake数组上生长泡沫镍(N-Ni3S2@C / NF)作为一个典型的材料。和催化剂表现出优秀的活动对于她和KOH超过1米,作为杰出的长期耐久性(最高可达140h)即使在大电流密度相似马300 cm(2)。结果表明,引入N掺杂剂将有利于加速网站和电荷转移,增加活跃提高内在活动,而非晶碳壳主要是负责任的的耐腐蚀性能和结构稳定。由N-Ni3S2@C / NF作为阴极和阳极只需要很低的电压为1.57 V提供一个电流密度马10厘米(2)与它的Pt / C | | IrO2吗同行。设计一个高性能的双功能水分解electrocatalyst与良好的催化活性和稳定性。

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