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首页> 外文期刊>ACS nano >Electrocatalytic and Photocatalytic Hydrogen Production from Acidic and Neutral-pH Aqueous Solutions Using Iron Phosphide Nanoparticles
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Electrocatalytic and Photocatalytic Hydrogen Production from Acidic and Neutral-pH Aqueous Solutions Using Iron Phosphide Nanoparticles

机译:酸性和中性pH水溶液中使用磷酸铁纳米粒子的电催化和光催化制氢

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Nanostructured transition-metal phosphides have recently emerged as Earth-abundant alternatives to platinum for catalyzing the hydrogen-evolution reaction (HER), which is central to several clean energy technologies because it produces molecular hydrogen through the electrochemical reduction of water. Iron-based catalysts are very attractive targets because iron is the most abundant and least expensive transition metal. We report herein that iron phosphide (FeP), synthesized as nanoparticles having a uniform, hollow morphology, exhibits among the highest HER activities reported to date in both acidic and neutral-pH aqueous solutions. As an electrocatalyst operating at a current density of -10 mA cm(-2), FeP nanoparticles deposited at a mass loading of similar to 1 mg cm(-2) on Ti substrates exhibited overpotentials of -50 mV in 0.50 M H2SO4 and -102 mV in 1.0 M phosphate buffered saline. The FeP nanoparticles supported sustained hydrogen production with essentially quantitative faradaic yields for extended time periods under galvanostatic control. Under UV illumination in both acidic and neutral-pH solutions, FeP nanoparticles deposited on TiO2 produced H-2 at rates and amounts that begin to approach those of Pt/TiO2. FeP therefore is a highly Earth-abundant material for efficiently facilitating the HER both electrocatalytically and photocatalytically.
机译:纳米结构的过渡金属磷化物最近已成为地球上铂的替代品,可催化氢演化反应(HER),这是几种清洁能源技术的核心,因为它通过水的电化学还原产生分子氢。铁基催化剂是非常有吸引力的目标,因为铁是最丰富,最便宜的过渡金属。我们在本文中报道,合成为具有均匀,空心形态的纳米粒子的磷化铁(FeP)在酸性和中性pH水溶液中均表现出迄今为止报道的最高HER活性。作为在-10 mA cm(-2)的电流密度下运行的电催化剂,在Ti基质上以类似于1 mg cm(-2)的质量负载沉积的FeP纳米颗粒在0.50 M H2SO4中具有-50 mV的超电势,并且-在1.0 M磷酸盐缓冲盐水中为102 mV。 FeP纳米颗粒在恒电流控制下以延长的时间段以基本定量的法拉第产量支持了持续的制氢。在酸性和中性pH溶液的紫外线照射下,沉积在TiO2上的FeP纳米粒子产生的H-2的速率和数量开始接近Pt / TiO2。因此,FeP是高度富含地球的材料,可有效地促进电催化和光催化的HER。

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