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Low-Overpotential Electrocatalytic Water Splitting with Noble-Metal-Free Nanoparticles Supported in a sp~3 N-Rich Flexible COF

机译:低过电流电催化水分,贵金属无金属纳米颗粒,其在SP〜3富镍浓柔性COF中负载

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摘要

Covalent organic frameworks (COFs) are crystalline organic polymers with tunable structures. Here, a COF is prepared using building units with highly flexible tetrahedral sp(3) nitrogens. This flexibility gives rise to structural changes which generate mesopores capable of confining very small (2 nm sized) non-noble-metal-based nanoparticles (NPs). This nanocomposite shows exceptional activity toward the oxygen-evolution reaction from alkaline water with an overpotential of 258 mV at a current density of 10 mA cm(-2). The overpotential observed in the COF-nanoparticle system is the best in class, and is close to the current record of approximate to 200 mV for any noble-metalfree electrocatalytic water splitting system-the Fe-Co-Ni metal-oxide-film system. Also, it possesses outstanding kinetics (Tafel slope of 38.9 mV dec(-1)) for the reaction. The COF is able to stabilize such small-sized NP in the absence of any capping agent because of the COF-Ni(OH)(2) interactions arising from the N-rich backbone of the COF. Density-functional-theory modeling of the interaction between the hexagonal Ni(OH)(2) nanosheets and the COF shows that in the most favorable configuration the Ni(OH)(2) nanosheets are sandwiched between the sp(3) nitrogens of the adjacent COF layers and this can be crucial to maximizing their synergistic interactions.
机译:共价有机框架(COF)是具有可调谐结构的结晶有机聚合物。这里,使用具有高度灵活的四面体SP(3)氮的建筑单元制备COF。这种灵活性产生了结构变化,产生了能够限制非常小(<2nm大小)的非贵金属基纳米颗粒(NPS)的中孔。该纳米复合材料显示出与碱性水的氧化反应的卓越活性,其具有258mV的电流密度为10mA cm(-2)。在COF-纳米粒子系统中观察到的过电位是阶级中最好的,并且接近任何贵金属覆盖电催化水分解系统 - Fe-Co-Ni金属氧化物膜系统的预近似约200mV的记录。此外,它具有出色的动力学(Tafel斜率为38.9mV Dec(-1)),用于反应。由于COF-Ni(2)来自COF的富核骨架产生的COF-Ni(2)相互作用,COF能够在不存在任何封端剂的情况下稳定这种小尺寸的NP。六边形Ni(OH)(2)纳米片和COF之间的相互作用的密度 - 函数理论建模,表明,在最有利的配置中,Ni(OH)(2)纳米片夹在SP(3)氮之间夹在相邻的COF层,这对于最大化其协同相互作用可能是至关重要的。

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  • 来源
    《Advanced energy materials》 |2016年第13期|1600110.1-1600110.8|共8页
  • 作者单位

    Indian Inst Sci Educ & Res Dept Chem Pune 411008 Maharashtra India;

    CSIR Natl Chem Lab Phys & Mat Chem Div Pune 411008 Maharashtra India;

    Indian Inst Sci Educ & Res Dept Chem Pune 411008 Maharashtra India;

    Indian Inst Sci Educ & Res Dept Chem Pune 411008 Maharashtra India;

    Univ Ottawa Dept Chem Ctr Catalysis Res & Innovat Ottawa ON K1N 6N5 Canada;

    Univ Ottawa Dept Chem Ctr Catalysis Res & Innovat Ottawa ON K1N 6N5 Canada;

    CSIR Natl Chem Lab Phys & Mat Chem Div Pune 411008 Maharashtra India;

    Indian Inst Sci Educ & Res Dept Chem Pune 411008 Maharashtra India|Indian Inst Sci Educ & Res Ctr Energy Sci Pune 411008 Maharashtra India;

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