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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Atomic layer deposition-SiO2 layers protected PdCoNi nanoparticles supported on TiO2 nanopowders: Exceptionally stable nanocatalyst for the dehydrogenation of formic acid
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Atomic layer deposition-SiO2 layers protected PdCoNi nanoparticles supported on TiO2 nanopowders: Exceptionally stable nanocatalyst for the dehydrogenation of formic acid

机译:原子层沉积-SiO2层保护的PDCONI纳米粒子在TiO2纳米粉末中负载:用于甲酸脱氢的纳米催化剂的异常稳定的纳米催化剂

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摘要

TiO2 nanopowders supported trimetallic PdCoNi alloy nanoparticles were simply and reproducibly prepared by wet-impregnation followed by simultaneous reduction method, then to enhance their stability against to sintering and leaching atomic layer deposition (ALD) technique was utilized to grow SiO2 layers amongst these surface bound PdCoNi alloy nanoparticles (PdCoNi/TiO2-ALD-SiO2). These new nanomaterials are characterized by the combination of complimentary techniques and sum of their results exhibited that the formation of ALD-SiO2 layers protected well-dispersed and highly crystalline PdCoNi alloy nanoparticles (ca. 3.52 nm) supported on TiO2 nanopowders. The catalytic performance of the resulting PdCoNi/TiO2-ALD-SiO2 in terms of activity, selectivity and stability was investigated in the dehydrogenation of aqueous formic acid (HCOOH), which has recently been suggested as a promising hydrogen storage material with a 4.4 wt% hydrogen capacity, solution under mild conditions. The results collected from our systematic studies revealed that PdCoNi/TiO2-ALD-SiO2 nanomaterial can act as highly active and selective nanocatalyst in the formic acid dehydrogenation at room temperature by providing an initial turnover frequency (TOF) value of 207 mol H-2/mol metal;: h and >99% of dehydrogenation selectivity at almost complete conversion. More importantly, the catalytic reusability experiments separately carried out with PdCoNi/TiO2-ALD-SiO2 and PdCoNi/TiO2 nanocatalysts in the dehydrogenation of formic acid under more forcing conditions pointed out that PdCoNi/TiO2-ALD-SiO2 nanocatalyst displays unprecedented catalytic stability against to leaching and sintering throughout the reusability experiments it retains almost its inherent activity, selectivity and conversion even at 20th reuse, whereas analogous PdCoNi/TiO2 completely lost its catalytic performance. (C) 2017 Elsevier B.V. All rights reserved.
机译:支撑TiO2纳米粉粉支撑的三核Pdconi合金纳米颗粒简单地并通过湿浸渍再现制备,然后同时还原方法,然后增强其烧结稳定性,并且利用浸出原子层沉积(ALD)技术在这些表面结合的Pdconi中生长SiO2层合金纳米粒子(Pdconi / TiO2-Ald-SiO 2)。这些新的纳米材料的特征在于,它们的组合和其结果的组合表明,Ald-SiO 2层的形成保护了在TiO2纳米粉粉上负载的分散的分散和高度结晶的Pdconi合金纳米颗粒(Ca.3.52nm)。在活性,选择性和稳定性方面,在甲酸水溶液(HCOOH)的脱氢中研究了所得的PDCONI / TiO2-ALD-SiO 2的催化性能,该甲酸水溶液(HCOOH)是最近被建议为具有4.4wt%的有前途的储氢材料氢气能力,溶液在温和条件下。从我们的系统研究中收集的结果表明,通过提供207mol H-2/2 /的初始周转频率(TOF)值/ Mol金属;: H和> 99%的脱氢选择性几乎完全转化。更重要的是,在更强迫条件下,用PDCONI / TiO 2 -Ald-SiO2和Pdconi / TiO2纳米催化在甲酸的脱氢中分别进行的催化可重复用来实验指出,PDCONI / TiO2-ALD-SiO2纳米催化剂呈现出前所未有的催化稳定性在整个可重用性实验中浸出和烧结,即使在20日重用,也保持其固有的活性,选择性和转化,而​​类似PDCONI / TiO2完全失去了催化性能。 (c)2017 Elsevier B.v.保留所有权利。

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