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Support effect in the preparation of supported metal catalysts via microemulsion

机译:通过微乳液制备负载型金属催化剂的负载效应

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摘要

It is well known that the activities of supported metal catalysts are strongly dependent upon the size, shape and dispersion of the nanoparticles on the support material. There are several techniques which can be implemented in order to produce such catalysts, e.g. wet impregnation, however the deposition of nanoparticles (NPs) on the support material without agglomeration still proves a challenge. This is particularly significant when attempting to maintain the size and shape of the particles during the deposition process. We have introduced a new method to deposit metal NPs, namely thermo-destabilization of microemulsions (please see J. Mater. Chem., 2012, 22, 11605–11614 and Nanoscale, 2013, 5, 796–805), in which the NPs are formed prior the deposition process. This method is an ingenious approach to control the dispersion of NPs on the support material and depositing NPs evenly with a narrow size distribution. In this paper we expound the important role of the surface charges of NPs and the support material, as indicated by zeta potentials, on the metal dispersion, and how they affect the catalytic activity. We also investigate the influence of other parameters such as the pore size and the pre-calcination of the support on the catalytic activities of the resulting supported metal catalysts.
机译:众所周知,负载的金属催化剂的活性强烈取决于纳米颗粒在载体材料上的大小,形状和分散性。为了生产这样的催化剂,可以实施几种技术,例如。湿法浸渍,但是纳米颗粒(NPs)在不团聚的情况下沉积在载体材料上仍然是一个挑战。当试图在沉积过程中保持颗粒的尺寸和形状时,这尤其重要。我们引入了一种沉积金属纳米颗粒的新方法,即微乳液的热去稳定化(请参见J. Mater。Chem。,2012,22,11605–11614和Nanoscale,2013,5,796-805),其中NP在沉积过程之前形成。此方法是一种巧妙的方法,可控制NP在载体材料上的分散并以窄的尺寸分布均匀地沉积NP。在本文中,我们阐述了纳米粒子和载体材料的表面电荷(如zeta电位所示)对金属分散的重要作用,以及它们如何影响催化活性。我们还研究了其他参数(例如孔径和载体的预煅烧)对所得载体金属催化剂催化活性的影响。

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