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首页> 外文期刊>ACS applied materials & interfaces >Catalyst Support Effect on the Activity and Durability of Magnetic Nanoparticles: toward Design of Advanced Electrocatalyst for Full Water Splitting
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Catalyst Support Effect on the Activity and Durability of Magnetic Nanoparticles: toward Design of Advanced Electrocatalyst for Full Water Splitting

机译:催化剂对磁性纳米粒子的活性和耐久性的催化剂促进作用:朝向全水分裂先进电催化剂的设计

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摘要

Earth-abundant element-based inorganic organic hybrid materials are attractive alternatives for electrocatalyzing energy conversion reactions. Such material structures do not only increase the surface area and stability of metal nanoparticles (NPs) but also modify the electrocatalytic performance. Here, we introduce, for the first time, multiwall carbon nanotubes (MWNTs) functionalized with nitrogen-rich emeraldine salt (ES) (denoted as ES-MWNT) as a promising catalyst support to boost the electrocatalytic activity of magnetic maghemite (gamma-Fe2O3) NPs. The latter component has been synthesized by a simple and upscalable one-step pulsed laser ablation method on Ni core forming the core-shell Ni@gamma-Fe2O3 NPs. The catalyst (Ni@gamma-Fe2O3/ES-MWNT) is formed via self-assembly as strong interaction between ES-MWNT and Ni@gamma-Fe2O3 results in NPs' encapsulation in a thin C-N shell. We further show that Ni does not directly function as an active site in the electrocatalyst but it has a crucial role in synthesizing the maghemite shell. The strong interaction between the NPs and the support improves notably the NPs' catalytic activity toward oxygen evolution reaction (OER) in terms of both onset potential and current density, ranking it among the most active catalysts reported so far. Furthermore, this material shows a superior durability to most of the current excellent OER electrocatalysts as the activity, and the structure, remains almost intact after 5000 OER stability cycles. On further characterization, the same trend has been observed for hydrogen evolution reaction, the other half-reaction of water splitting.
机译:基于地球的元素的无机有机混合材料是用于电催化能量转化反应的有吸引力的替代方案。这种材料结构不仅增加了金属纳米颗粒(NPS)的表面积和稳定性,而且改变了电催化性能。在这里,我们首次介绍与富含氮祖母绿盐(表示为ES-MWNT)作为有前途催化剂载体官能化的多壁碳纳米管(MWNT),以促进磁性磁石(Gamma-Fe2O3的电催化活性)NPS。后一组分已经通过在Ni芯上的简单和上升的一步脉冲激光烧蚀方法合成,形成核心壳Ni @ Gamma-Fe2O3 NPS。催化剂(Niγ-Fe2O3 / ES-MWNT)通过自组装形成,因为ES-MWNT和Niγ-Fe2O3之间的强相互作用导致NPS在薄C-N壳中的封装。我们进一步表明,NI不直接用作电催化剂中的活性位点,但它在合成Maghemite壳中具有至关重要的作用。 NPS与载体之间的强相互作用显着提高了NPS的催化活性,以便在发病潜在和电流密度方面,在迄今为止报告的最活跃的催化剂中排名。此外,该材料显示出大多数当前优质的Oer电催化剂的优异耐久性,以及在5000个Oer稳定性循环后几乎完整地保持几乎完整。在进一步表征上,已经观察到相同的趋势对于氢进化反应,水分裂的另一半反应。

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