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Synthesis of composite ruthenium-containing silica nanomaterials from amine-stabilized ruthenium nanoparticles as elemental bricks

机译:由胺稳定的钌纳米粒子作为元素砖合成含钌的二氧化硅复合纳米材料

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摘要

A facile synthesis of composite ruthenium-containing silica nanomaterials from amine stabilized-ruthenium nanoparticles as elemental bricks is described. This route takes advantage of an organometallic approach and the use of bifunctional H2N-(CH2)_x-Si(OEt)3 amines as stabilizing ligands (x = 3, 11) for the synthesis of ruthenium nanoparticles, from [Ru(COD)(COT)] (COD = 1,3-cyclooctadiene, COT = 1,3,5-cyclooctatriene) as the metal precursor. Classical hydrolysis and polycondensation steps of the sol-gel approach further lead to the formation of the silica matrix around the ruthenium nanoparticles. [RuO2]@SiO2 nanocomposites are then obtained through a calcination step in air. The final composite nanomaterials were characterized by different techniques and they were found to possess a high specific surface area making them attractive materials for catalysis.
机译:描述了由胺稳定的钌纳米颗粒作为元素砖容易地合成含钌的复合二氧化硅纳米材料的方法。该路线利用有机金属方法和使用双官能H2N-(CH2)_x-Si(OEt)3胺作为稳定配体(x = 3,11)从[Ru(COD)( (COT)](COD = 1,3-环辛二烯,COT = 1,3,5-环辛三烯)作为金属前体。溶胶-凝胶方法的经典水解和缩聚步骤进一步导致在钌纳米颗粒周围形成二氧化硅基质。然后通过在空气中的煅烧步骤获得[RuO2] @ SiO2纳米复合材料。最终的复合纳米材料采用不同的技术进行表征,发现它们具有高的比表面积,使其成为有吸引力的催化材料。

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