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首页> 外文期刊>Nanoscale >In situ confined vertical growth of a 1D-CuCo2S4 nanoarray on Ni foam covered by a 3D-PANI mesh layer to form a self-supporting hierarchical structure for high-efficiency oxygen evolution catalysis
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In situ confined vertical growth of a 1D-CuCo2S4 nanoarray on Ni foam covered by a 3D-PANI mesh layer to form a self-supporting hierarchical structure for high-efficiency oxygen evolution catalysis

机译:1 d-cuco2s4原位承压垂直增长在泡沫镍纳米阵列由3 d-pani网层形成自立的层次结构高效氧进化催化

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摘要

Inspired by the patchwork of artificial turf, where planting in a smaller area can result in a more uniform lawn that grows in one direction, here, we defined the growth position and orientation of a CuCo2S4 nanoarray for the first time by electroplating a PANI mesh layer onto a Ni foam to obtain a self-supporting hierarchical electrode material. The nitrogen species derived from the PANI building blocks act as bridging sites to bind with metal ions, which provides a strong coupling effect for the in situ growth of CuCo2S4. At the same time, the mesh structure of PANI divides the growable location into smaller blocks. Compared with a mesh plane with uniformly distributed nitrogen sites, only a small portion of the nitrogen sites are located on the narrow-width fence structure, which may make it difficult for CuCo2S4 to grow onto the fence structure, thereby limiting the self-growth space and confining CuCo2S4. The uniformly distributed growth sites direct CuCo2S4 to grow perpendicular to the plane while limiting their growth size. The excellent structural features further enhance the electrochemical oxygen evolution activity, and the oxygen evolution overpotential at a current density of 100 mA cm(-2) is only 291 mV, which is superior to that of the currently known cobalt-copper-based catalyst materials. In addition, the stable structure provides excellent electrode cyclic stability. The preparation of hierarchical self-supporting cobalt-copper bimetallic sulfide nanoarrays provided a reference direction for other transition metal catalytic materials and provided a basis for industrial applications.
机译:灵感来自人造草皮的拼凑,种植在一个较小的区域会导致更统一的草坪生长在一个方向,在这里,我们定义了位置和增长取向CuCo2S4纳米阵列的第一通过电镀PANI网格层上倪泡沫获得自营的分层电极材料。作为过渡性PANI的构建块网站与金属离子结合,它提供了一个原位生长的强耦合的影响CuCo2S4。PANI分裂成更小的可生长的位置块。分布式氮网站,只有一小部分氮的网站位于窄型栅栏结构,这可能会让它CuCo2S4很难成长到栅栏结构,从而限制了自我成长的空间和围CuCo2S4。增长网站直接CuCo2S4垂直生长飞机而限制其增长的大小。优秀的结构功能进一步加强电化学氧进化活动,和氧过电压在进化100毫安的电流密度厘米(2)只有291 mV,优于目前已知的是哪一个cobalt-copper-based催化剂材料。此外,提供了优秀的稳定结构电极的循环稳定性。分层自营cobalt-copper双金属硫化物纳米阵列提供了一个参考方向其他过渡金属催化材料和提供了依据工业应用。

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