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首页> 外文期刊>ACS applied materials & interfaces >Enhancing Au/TiO2 Catalyst Thermostability and Coking Resistance with Alkyl Phosphonic-Acid Self-Assembled Monolayers
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Enhancing Au/TiO2 Catalyst Thermostability and Coking Resistance with Alkyl Phosphonic-Acid Self-Assembled Monolayers

机译:用烷基膦酸自组装单层增强Au / TiO2催化剂热稳定性和焦化性

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摘要

Metal oxide-supported Au catalysts, particularly those with small Au nanoparticles, catalyze a variety of reactions including low-temperature CO oxidation and selective hydrogenation of alkynes. However, the facile nature of Au particle growth at even moderate temperatures poses significant challenges to maintaining catalyst activity under reaction conditions. Here, we present a method to reduce the rate of sintering and coke formation in TiO_(2)-supported Au catalysts via the deposition of alkyl-phosphonic acid (PA) self-assembled monolayers. After surface modification with PAs, the resultant catalysts exhibited significantly improved resistance to Au sintering. PA deposition strongly suppressed CO oxidation rates, consistent with poisoning of active sites. In contrast, modification with PAs significantly improved the rate of C_(2)H_(2) hydrogenation on Au/TiO_(2). The enhanced activity was accompanied by a dramatically improved resistance to accumulation of surface carbonaceous species.
机译:金属氧化物负载的Au催化剂,特别是具有小Au纳米颗粒的催化剂,催化各种反应,包括低温共氧化和炔烃的选择性氢化。然而,甚至中等温度下的Au颗粒生长的容易性质造成了在反应条件下维持催化剂活性的显着挑战。这里,我们通过沉积烷基 - 膦酸(PA)自组装单层,提出了一种方法以减少TiO_(2)-Upported的Au催化剂中的烧结和焦炭形成。用PAS表面改性后,所得催化剂表现出对Au烧结的抗性显着改善。 PA沉积强烈抑制了共氧化率,与活性位点中毒一致。相反,随着PAS的修饰显着提高了Au / TiO_(2)上的C_(2)H_(2)氢化的速率。增强的活性伴随着显着改善的表面含碳物种积累的抗性。

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