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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Large trisoctahedral Au nanoparticles encapsulated inside porous silica catalyses CO oxidation at room temperature: Probing the effect of encapsulation and the role of step atoms and interfaces
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Large trisoctahedral Au nanoparticles encapsulated inside porous silica catalyses CO oxidation at room temperature: Probing the effect of encapsulation and the role of step atoms and interfaces

机译:包裹在多孔二氧化硅中的大型三八面体金纳米颗粒在室温下催化CO氧化:探究包封的效果以及阶跃原子和界面的作用

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摘要

As envisaged, a synthesis strategy is reported for encapsulating high index faceted trisoctahedral Au nanoparticles inside porous silica to preserve nanoparticle size by preventing sintering. Further, to probe the role of interfaces an active metal oxide junction was created by decorating trisoctahedral (TOH) Au nanoparticle with nano oxides before silica encapsulation. The activity of these catalysts was tested for CO oxidation reaction. The reaction was found to be facile on these encapsulated large structured Au nanoparticles showing appreciable activity at room temperature compared to non encapsulated counterparts. Apart from preventing sintering, the improved activity is demonstrated due to the retention of morphology and thereby the active centres due to encapsulation. (C) 2016 Elsevier B.V. All rights reserved.
机译:如所设想的,报道了一种合成策略,该策略用于将高折射率的刻面三八面体Au纳米粒子封装在多孔二氧化硅内部,以通过防止烧结来保持纳米粒子的尺寸。此外,为了探测界面的作用,通过在二氧化硅包封之前用纳米氧化物装饰三八面体(TOH)Au纳米颗粒来创建活性金属氧化物结。测试了这些催化剂的CO氧化反应活性。发现该反应在这些封装的大结构化的Au纳米颗粒上是容易的,与未封装的对应物相比,该纳米颗粒在室温下显示出可观的活性。除了防止烧结之外,由于保留了形态,因此还显示出改善的活性,并因此由于封装而保留了活性中心。 (C)2016 Elsevier B.V.保留所有权利。

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