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Surface cavities of Ni(OH)(2) nanowires can host Au nanoparticles as supported catalysts with high catalytic activity and stability

机译:Ni(OH)(2)纳米线的表面腔可以承载Au纳米颗粒作为具有高催化活性和稳定性的负载型催化剂

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摘要

We present a proof-of-concept demonstration of surface cavities for incorporation of noble metal nanoparticles with remarkable catalytic performance involved in liquid phase catalytic reactions. Mesoporous Ni(OH)(2) (m-Ni(OH)(2)) nanowires with surface cavities have been chosen as multifunctional supports for Au nanoparticles with a well controlled size (2 nm) and high dispersity through a facile room-temperature in situ reduction process without any additional stabilizer. In addition to immobilizing Au nanoparticles, the cavities also can prevent aggregation of neighboring noble metal nanoparticles, thus ensuring high stability/recyclability for Au/m-Ni(OH)(2) supported nanocatalysts. The results from catalytic reactions involved in the reduction of 4-nitrophenol in the presence of NaBH4 using Au/m-Ni(OH)(2) as the catalyst demonstrated its remarkable catalytic performance due to its nanoscale configuration.
机译:我们提出了表面空腔的概念证明,该空腔用于并入具有液相催化反应的显着催化性能的贵金属纳米粒子。具有表面空腔的介孔Ni(OH)(2)(m-Ni(OH)(2))纳米线已被选作具有良好控制的尺寸(2 nm)和在易室温下具有高分散性的Au纳米粒子的多功能载体原位还原过程,无需任何其他稳定剂。除固定Au纳米颗粒外,空腔还可以防止相邻的贵金属纳米颗粒聚集,从而确保Au / m-Ni(OH)(2)负载的纳米催化剂具有较高的稳定性/可回收性。在NaBH4存在下使用Au / m-Ni(OH)(2)作为催化剂的催化反应涉及的还原4-硝基苯酚的结果表明,由于其纳米级的结构,其具有显着的催化性能。

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