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首页> 外文期刊>Nano Energy >Amorphous Ni(OH) 2 encounter with crystalline CuS in hollow spheres: A mesoporous nano-shelled heterostructure for hydrogen evolution electrocatalysis
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Amorphous Ni(OH) 2 encounter with crystalline CuS in hollow spheres: A mesoporous nano-shelled heterostructure for hydrogen evolution electrocatalysis

机译:无定形Ni(OH) 2 在空心球中遇到结晶CUS:一种用于氢进化电常见的介孔纳米壳异质结构

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AbstractHighly active, durable and cost-effective eletrocatalysts are crucial for hydrogen evolution reaction (HER). Herein, we report novel hollow hybrid spheres comprising of amorphous Ni(OH)2and crystalline CuS mesoporous nano-shelled heterostructures as efficient HER electrocatalysts. Spherical Cu2O particles are used as templates for fabrication of Ni(OH)2@CuS hollow spheres with nano-shelled heterostructures. The as-obtained catalysts exhibit much higher performance than the single Ni(OH)2, CuS, their physical mixture and crystalline Ni(OH)2@CuS toward water electrochemical reduction in alkaline medium. The superior HER electrocatalytic performance might be attributed to the unique hollow mesoporous nanoshelled architecture and the heterostructured synergetic effects between amorphous Ni(OH)2and crystalline CuS, in which the short-range order of the inner amorphous Ni(OH)2mesoporous shell creates abundant active sites on the surface, and the conductive CuS out layer promotes electron transportation. This work might open a door for designing and synthesizing of hollow nanomaterials with mesoporous nano-shelled heterostructures consist of amorphous and crystalline phase for applications in electrochemical catalysis and energy conversion.Graphical abstract
机译:<![cdata [ 抽象 高度活跃,耐用且经济高效的Eletrocatalysts对于氢气进化反应(她)至关重要。在此,我们报告了包含无定形Ni(OH) 2 和结晶Cus中孔纳米壳的异质结构作为高效的催眠催化剂。球形CU 2 O颗粒用作制造NI(OH) 2 @的模板CUS空心球与纳米壳异质结构。作为所得催化剂表现出比单个Ni(OH),CU,其物理混合物和结晶Ni(OH) 2> 2 @cus朝着水电化学减少碱性培养基。她的电催化性能优异可能归因于独特的中空介孔纳米型架构和无定形Ni(OH) 2 和结晶CU之间的异质结构的协同效应。内部无定形Ni(OH)的短距顺序(OH) 2 中孔壳在表面上产生丰富的有源网站,并且导电管道促进电子运输。这项工作可能打开一门用于设计和合成中空纳米材料,其中介孔纳米壳异质结构由无定形和结晶相组成,用于电化学催化和能量转化中的应用。 图形摘要

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