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首页> 外文期刊>Scientific reports. >High Efficient Photo-Fenton Catalyst of α-Fe2O3/MoS2 Hierarchical Nanoheterostructures: Reutilization for Supercapacitors
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High Efficient Photo-Fenton Catalyst of α-Fe2O3/MoS2 Hierarchical Nanoheterostructures: Reutilization for Supercapacitors

机译:α-Fe2O3 / MOS2分层纳米纳米能结构高效光芬顿催化剂:超级电容器的再生

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A novel three-dimensional (3D) α-Fe2O3/MoS2 hierarchical nanoheterostructure is effectively synthesized via a facile hydrothermal method. The zero-dimensional (0D) Fe2O3 nanoparticles guide the growth of two-dimensional (2D) MoS2 nanosheets and formed 3D flower-like structures, while MoS2 facilitates the good dispersion of porous Fe2O3 with abundant oxygen vacancies. This charming 3D-structure with perfect match of non-equal dimension exhibits high recyclable photo-Fenton catalytic activity for Methyl orange pollutant and nice specific capacity in reusing as supercapacitor after catalysis. The synergistic effect between Fe2O3 and MoS2, the intermediate nanointerfaces, the 3D porous structures, and the abundant oxygen vacancies both contribute to highly active catalysis, nice electrochemical performance and stable cycling. This strategy is simple, cheap, and feasible for maximizing the value of the materials, as well as eliminating the secondary pollution.
机译:通过容易的水热法有效地合成了一种新的三维(3D)α-Fe2O3 / MOS2分层纳米核能结构。零维(0d)Fe2O3纳米颗粒引导二维(2D)MOS2纳米片的生长和形成的3D花状结构,而MOS2有助于多孔Fe2O3与丰富的氧空位的良好分散。这种具有完美匹配的非等级级别的迷人的3D结构在催化剂后,在甲基橙色污染物和良好的特定能力中表现出高可回收的光芬顿催化活性。 Fe2O3和MOS2之间的协同效应,中间纳米叶片,3D多孔结构和丰富的氧空位既有助于高度活跃的催化,电化学性能和稳定的循环。这种策略简单,便宜,可行,可最大限度地提高材料的价值,并消除二次污染。

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