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首页> 外文期刊>ACS applied materials & interfaces >CoSe2 and NiSe2 Nanocrystals as Superior Bifunctional Catalysts for Electrochemical and Photoelectrochemical Water Splitting
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CoSe2 and NiSe2 Nanocrystals as Superior Bifunctional Catalysts for Electrochemical and Photoelectrochemical Water Splitting

机译:CoSe2和NiSe2纳米晶体是用于电化学和光电化学水分解的高级双功能催化剂

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Catalysts for oxygen evolution reactions (OER) and hydrogen evolution reactions (HER) are central to key renewable energy technologies, including fuel cells and water splitting. Despite tremendous effort, the development of low-cost electrode catalysts with high activity remains a great challenge. In this study, we report the, synthesis of CoSe2 and NiSe2, nanocrystals (NCs) as excellent bifunctional catalysts for simultaneous generation of H-2 and O-2 in water-splitting reactions. NiSe2 NCs exhibit superior electrocatalytic efficiency in OER, with a Tafel slope (b) of 38 mV dec(-1) (in 1 M KOH), and HER, with b = 44 mV dec(-1) (in 0.5 M H2SO4). In comparison, CoSe2 NCs are less efficient for OER (b = 50 mV dec(-1)), but more efficient for HER (b = 40 mV dec(-1)). It was found that CoSe2 NCs contained more metallic metal ions than NiSe2, which could be responsible for their improved performance in HER. Robust evidence for surface oxidation suggests that the surface oxide layers are the actual active sites for OER, and that CoSe2 (or NiSe2) under the surface act as good conductive layers. The higher catalytic activity of NiSe2 is attributed to their oxide layers being more active than those of CoSe2. Furthermore, we fabricated a Si-based photoanode by depositing NiSe2 NCs onto an n-type Si nanowire array, which showed efficient photoelectrochemical water oxidation with a low onset potential (0.7 V versus reversible hydrogen electrode) and high durability. The remarkable catalytic activity, low cost, and scalability of NiSe2 make it a promising candidate for practical water-splitting solar cells.
机译:氧释放反应(OER)和氢释放反应(HER)的催化剂对于关键的可再生能源技术(包括燃料电池和水分解)至关重要。尽管付出了巨大的努力,但开发具有高活性的低成本电极催化剂仍然是一个巨大的挑战。在这项研究中,我们报告了CoSe2和NiSe2纳米晶(NCs)的合成,它们是在水分解反应中同时生成H-2和O-2的出色的双功能催化剂。 NiSe2 NCs在OER中表现出优异的电催化效率,Tafel斜率(b)为38 mV dec(-1)(在1 M KOH中),而HER在b = 44 mV dec(-1)(在0.5 M H2SO4中) 。相比之下,CoSe2 NC对OER的效率较低(b = 50 mV dec(-1)),但对HER的效率较高(b = 40 mV dec(-1))。发现CoSe2 NCs比NiSe2包含更多的金属离子,这可能是其在HER中性能提高的原因。表面氧化的有力证据表明,表面氧化物层是OER的实际活性部位,并且表面下的CoSe2(或NiSe2)可作为良好的导电层。 NiSe2的较高催化活性归因于其氧化物层比CoSe2的氧化物层更具活性。此外,我们通过将NiSe2 NC沉积到n型Si纳米线阵列上来制造基于Si的光阳极,该阵列显示出有效的光电化学水氧化作用,具有低的起始电位(相对于可逆氢电极为0.7 V)和高的耐久性。 NiSe2出色的催化活性,低成本和可扩展性使其成为实用的水分解太阳能电池的有希望的候选者。

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