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Gold-palladium colloids as catalysts for hydrogen peroxide synthesis, degradation and methane oxidation: effect of the PVP stabiliser

机译:Gold-palladium胶体作为氢的催化剂过氧化氢合成、降解和甲烷氧化:PVP稳定器的作用

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The reactivity of AuPd nanoparticle catalysts prepared by sol immobilisation is often explained by a structure activity relationship based solely on particle size or composition. In this contribution, we compare colloidal AuPd nanoparticles stabilised with polyvinylpyrrolidone (PVP) with the same AuPd nanoparticles supported on TiO(2)for the direct synthesis of hydrogen peroxide and methane oxidation to methanol. We show that while the particles have similar rates of H(2)O(2)synthesis, supporting the particles can affect the rates of H(2)O(2)decomposition and hence the effectiveness of the catalyst for reactions which rely on H(2)O(2)as an initiator or oxidant. We demonstrate that the absence of PVP results in high rates of H(2)O(2)decomposition in methane oxidation experiments but this can be minimised by the addition of PVP to the reactor. These results also show that for AuPd alloys, both polymer stabiliser and support effects need to be taken into account when describing the activity of the nanoparticles and the active sites should in fact be thought of as a metal-support-polymer interface with many degrees of freedom.
机译:AuPd纳米催化剂的反应活性由溶胶固定通常是解释说完全由一个结构活动关系粒度及组成。贡献,我们比较胶体AuPd纳米粒子稳定与聚乙烯吡咯烷酮(PVP)与AuPd相同纳米粒子支持TiO直接(2)合成过氧化氢和甲烷甲醇氧化。粒子的比例相似H (2) O(2)合成、支持粒子可以影响利率的H (2) O(2)分解和因此催化剂的有效性反应,依赖于H (2) O(2)作为发起人或氧化剂。PVP导致高H (2) O(2)在甲烷氧化分解实验,但这可以最小化添加PVP的反应堆。也表明AuPd合金,两种聚合物需要采取稳定器和支持的影响在描述的活动纳米颗粒和活跃的网站应该事实上被认为是一个metal-support-polymer多自由度的界面。

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