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Chloride promoted room temperature preparation of silver nanoparticles on two dimensional tungsten oxide nanoarchitectures for the catalytic oxidation of tertiary N-compounds to N-oxides

机译:氯提升室温制备银纳米粒子在二维钨催化氧化nanoarchitectures氧化叔N-compounds N-oxides

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摘要

A halide ion promoted two dimensional silver tungsten-based nanomaterial was synthesized by a facile one-pot synthesis protocol at room temperature. The 2D morphology features high activity and selectivity for the oxidation of a wide range of tertiary N-compounds to their corresponding N-oxides. The morphology of Ag/WO3 materials can be varied by changing the synthesis parameters. The unique 2D plate like morphology of tungsten oxide increases adsorption sites of the support, leading to less sintering and higher dispersion of silver nanoparticles, resulting in significantly enhanced activity for the reaction. The influence of reaction parameters such as temperature, substrate to oxidant molar ratio, reaction time, etc. was investigated in detail. The catalyst was characterized by XRD, XPS, ICP-AES, TGA, FT-IR, UV-vis, Raman, SEM, TEM and STEM. Raman studies further provide mechanistic insight which proves that the formation of peroxo tungsten species is responsible for the N-oxidation reaction. High stability and recyclability of the 2D Ag/WO3 nanoplates are also observed under the investigated conditions.
机译:卤化物离子促进了二维银此类纳米材料合成的简单合成协议在房间温度。氧化反应的活性和选择性广泛的三级N-compounds他们相应的N-oxides。通过改变合成材料可以是多种多样的参数。氧化钨的增加吸附的网站的支持,导致更少的烧结和高分散的银纳米颗粒,导致显著增强活动的反应。反应等参数的影响温度、衬底氧化剂摩尔比反应时间等详细调查。催化剂以XRD, XPS,阀杆。见解,证明peroxo的形成钨物种负责N-oxidation反应。再循环能力的2 d Ag / WO3 nanoplates也在研究条件下观察到的。

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