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首页> 外文期刊>Angewandte Chemie >Single-Site Molybdenum on Solid Support Materials for Catalytic Hydrogenation of N-2-into-NH3
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Single-Site Molybdenum on Solid Support Materials for Catalytic Hydrogenation of N-2-into-NH3

机译:用于催化氢化N-2-in-NH3的固体支持材料上的单部位钼

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摘要

Very stable in operando and low-loaded atomic molybdenum on solid-support materials have been prepared and tested to be catalytically active for N-2-into-NH3 hydrogenation. Ammonia synthesis is reported at atmospheric pressure and 400 degrees C with NH3 rates of approximately 1.3 x 10(3 )mu molh(-1) g(Mo) (-1) using a well-defined Mo-hydride grafted on silica (SiO2-700 ). DFT modelling on the reaction mechanism suggests that N-2 spontaneously binds on monopodal [(equivalent to Si-O-)MoH3]. Based on calculations, the fourth hydro-genation step involving the release of the first NH3 molecule represents the rate-limiting step of the whole reaction. The inclusion of cobalt co-catalyst and an alkali caesium additive impregnated on a mesoporous SBA-15 support increases the formation of NH3 with rates of circa 3.5 x .10(3) mu molh(-1) g(Mo)(-1) under similar operating conditions and maximum yield of 29 x 10(3) mu molh(-1) gMo(-1) when the pressure is increased to 30 atm.
机译:在Operando和低负载的原子钼中非常稳定地制备并测试并测试以催化活性为N-2 -2-in-NH 3氢化。 氨合成在大气压和400摄氏度下报告,使用嫁接在二氧化硅上的明确定义的莫 - 氢化物(SiO 2 - 700)。 反应机制上的DFT建模表明N-2自发地结合单醇[(相当于Si-O-)MoH3]。 基于计算,涉及第一个NH 3分子释放的第四水基因研究步骤代表了整个反应的速率限制步骤。 将钴的助催化剂和碱性铯添加剂含有浸渍在介孔的SBA-15载体上,增加了NH 3的形成,Civa 3.5×10(3)mmolh(-1)g(mo)( - 1) 在相似的操作条件下,当压力增加到30atm时,在类似的操作条件下和29×10(3)mmolH(-1)Gmo(-1)的最大收率。

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