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Towards efficient use of noble metals via exsolution exemplified for CO oxidation

机译:有效地利用贵金属通过对CO氧化脱溶的例证

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Many catalysts and in particular automotive exhaust catalysts usually consist of noble metal nanoparticles dispersed on metal oxide supports. While highly active, such catalysts are expensive and prone to deactivation by sintering and thus alternative methods for their production are being sought to ensure more efficient use of noble metals. Exsolution has been shown to be an approach to produce confined nanoparticles, which in turn are more stable against agglomeration, and, at the same time strained, displaying enhanced activity. While exsolution has been extensively investigated for relatively high metal loadings, it has yet to be explored for dilute loadings which is expected to be more challenging but more suitable for application of noble metals. Here we explore the substitution of Rh into an A-site deficient perovskite titante aiming to investigate the possibility of exsolving from dilute amounts of noble metal substituted perovskites. We show that this is possible and in spite of certain limitations, they still compete well against conventionally prepared samples with higher apparent surface loading when applied for CO oxidation.
机译:许多催化剂,特别是汽车排气催化剂通常由贵金属在金属氧化物纳米颗粒分散的支持。虽然高度活跃,这种催化剂是昂贵的并通过烧结,从而容易失活为他们的生产方法正在寻求确保更有效地利用高贵的金属。生产方法在纳米粒子,进而对集聚更稳定,在同一时间紧张,显示增强活动。广泛的调查相对较高金属载荷,它还有待探索稀释载荷预计将更多挑战性但更适合应用高贵的金属。Rh成一个网站缺乏钙钛矿titante旨在调查的可能性exsolving稀释大量的贵金属钙钛矿代替。可能的,尽管某些局限性,他们仍然与传统竞争准备样品表面明显较高加载的时候申请CO氧化。

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