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首页> 外文期刊>Advanced energy materials >Transforming Nickel Hydroxide into 3D Prussian Blue Analogue Array to Obtain Ni_2P/Fe_2P for Efficient Hydrogen Evolution Reaction
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Transforming Nickel Hydroxide into 3D Prussian Blue Analogue Array to Obtain Ni_2P/Fe_2P for Efficient Hydrogen Evolution Reaction

机译:将氢氧化镍转化为3D普鲁士蓝类似物阵列以获得Ni_2P / Fe_2P以有效地进行氢释放反应

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摘要

For the first time, a 3D Prussian blue analogue (PBA) with well-defined spatial organization is fabricated by using a nickel hydroxide array as a precursor. The nickel hydroxide arrays are synthesized in titanium foil and reacted with K-3[Fe(CN)(6)]. The plate-like morphology of the nickel hydroxide is perfectly preserved and combined with abundant PBA nanocubes. After phosphidation at 350 degrees C, the obtained sample demonstrated excellent hydrogen evolution reaction (HER) activity in both acid and alkaline solutions to reach a current density of 10 mA cm(-2) with an overpotential of only 70 and 121 mV, respectively. With an overpotential of 266 mV, it can reach a larger current density of 500 mA cm-2 in acid. The efficient HER activity of the obtained sample is mainly ascribed to its structural advantage with various active metal sites derived from the nickel hydroxide and PBA precursor. In addition, long-term stability measurements have verified the good performance of the obtained sample in acid and alkaline solutions. An increment of overpotential of only 8 and 9 mV is observed, in the acid and alkaline solutions respectively. Beyond these assets, it is supposed that the strategy to synthesize 3D PBA arrays from nickel hydroxide can be extended to other metal-organic frameworks arrays for more electrochemical applications.
机译:首次使用氢氧化镍阵列作为前体,制造了具有明确空间结构的3D普鲁士蓝类似物(PBA)。氢氧化镍阵列是在钛箔中合成的,并与K-3 [Fe(CN)(6)]反应。氢氧化镍的板状形态得以完美保留,并与丰富的PBA纳米立方体结合在一起。在350摄氏度下进行磷化后,所获得的样品在酸性和碱性溶液中均表现出出色的氢释放反应(HER)活性,达到10 mA cm(-2)的电流密度,其过电势分别仅为70和121 mV。凭借266 mV的超电势,它可以在酸中达到500 mA cm-2的更大电流密度。所得样品的有效HER活性主要归因于其结构优势,其具有源自氢氧化镍和PBA前体的各种活性金属位点。此外,长期的稳定性测量已经证实了所得样品在酸性和碱性溶液中的良好性能。在酸性和碱性溶液中,仅观察到过电势增量分别为8和9 mV。除了这些资产之外,据推测,可以将由氢氧化镍合成3D PBA阵列的策略扩展到其他金属有机骨架阵列,以用于更多的电化学应用。

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