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Novel design of photocatalyst coaxial ferromagnetic core and semiconducting shell microwire architecture

机译:光催化性同轴铁磁芯和半导体壳微大建筑的新型设计

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We report a novel design of coaxial core-shell magnetic-semiconductor microwire, as a catalyst under sunlight irradiation. The nano/micro hierarchical architecture-like device is comprised of a coaxial core-shell microwire where the core is the ferromagnetic Fe metal and the shell is formed by a semi-conducting hematite layer. The fabrication process of our substrate-free device is simply based on controlled thermal oxidation process revealing a simple and low-cost method. The hematite outer microlayer has a mesoporous structure decorated with nanowires. The ferromagnetic and metallic core assume fundamental importance as to mechanical stability, collect the generated photoelectrons, and to be removed back from the dye solution by a magnetic field gradient or simply a magnet. This nano/micro device has exhibited photocatalytic activity to degrade the methylene blue dye under simulated sunlight irradiation. Additionally, the coaxial magnetic/semiconducting can also be designed as a photoanode to drive water oxidation reaction. The coaxial magnetic/semiconducting photoanode response has shown good chemical stability and long activity under simulated sunlight radiation. In fact, this designed architecture gives novel perspective in the development of substrate free photocatalyst. (C) 2018 Elsevier Inc. All rights reserved.
机译:我们报告了同轴核 - 壳磁半导体微观的新颖设计,作为阳光照射的催化剂。纳米/微层级架构状装置包括同轴芯壳微线,其中芯是铁磁性Fe金属,并且通过半导体赤铁矿层形成壳。无基质装置的制造过程简单地基于控制的热氧化过程,揭示了一种简单且低成本的方法。赤铁矿外部微层具有含有纳米线装饰的中孔结构。铁磁性和金属芯具有对机械稳定性的根本重要性,收集产生的光电子,并通过磁场梯度或简称磁铁从染料溶液中除去。该纳米/微型装置表现出光催化活性,以降解亚甲基蓝色染料在模拟的阳光照射下。另外,同轴磁/半导体也可以设计为光电码以驱动水氧化反应。同轴磁/半导体光电响应在模拟阳光辐射下显示了良好的化学稳定性和长度的长度。实际上,这种设计的架构在基材的开发中提供了新颖的视角。 (c)2018年Elsevier Inc.保留所有权利。

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