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A large sample volume magic angle spinning nuclear magnetic resonance probe for in situ investigations with constant flow of reactants

机译:大样品体积的魔角旋转核磁共振探头,用于恒定流量反应物的原位研究

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A large-sample-volume constant-flow magic angle sample spinning (CF-MAS) NMR probe is reported for in situ studies of the reaction dynamics, stable intermediates/transition states, and mechanisms of catalytic reactions. In our approach, the reactants are introduced into the catalyst bed using a fixed tube at one end of the MAS rotor while a second fixed tube, linked to a vacuum pump, is attached at the other end of the rotor. The pressure difference between both ends of the catalyst bed inside the sample cell space forces the reactants flowing through the catalyst bed, which improves the diffusion of the reactants and products. This design allows the use of a large sample volume for enhanced sensitivity and thus permitting in situ ~(13)C CF-MAS studies at natural abundance. As an example of application, we show that reactants, products and reaction transition states associated with the 2-butanol dehydration reaction over a mesoporous silicalite supported heteropoly acid catalyst (HPA/meso-silicalite-1) can all be detected in a single ~(13)C CF-MAS NMR spectrum at natural abundance. Coke products can also be detected at natural ~(13)C abundance and under the stopped flow condition. Furthermore, ~1H CF-MAS NMR is used to identify the surface functional groups of HPA/meso-silicalite-1 under the condition of in situ drying. We also show that the reaction dynamics of 2-butanol dehydration using HPA/meso-silicalite-1 as a catalyst can be explored using ~1H CF-MAS NMR.
机译:据报道,大样品体积恒流魔角样品旋转(CF-MAS)NMR探针可用于原位研究反应动力学,稳定的中间体/过渡态以及催化反应机理。在我们的方法中,使用MAS转子一端的固定管将反应物引入催化剂床中,而连接到真空泵的第二根固定管则连接在转子的另一端。样品池空间内催化剂床两端之间的压力差迫使反应物流过催化剂床,从而改善了反应物和产物的扩散。这种设计允许使用较大的样品量以提高灵敏度,因此可以在自然丰度下进行原位(13)C CF-MAS研究。作为一个应用实例,我们表明与介孔硅沸石负载的杂多酸催化剂(HPA / meso-silicalite-1)上的2-丁醇脱水反应相关的反应物,产物和反应过渡态都可以在一个〜()中检测到。 13)C CF-MAS NMR光谱,自然丰度。在〜13°C的自然丰度下和在停止流动的条件下也可以检测到焦炭产品。此外,在原位干燥的条件下,〜1H CF-MAS NMR用于鉴定HPA / meso-silicalite-1的表面官能团。我们还表明,使用〜1H CF-MAS NMR可以探索使用HPA /介硅硅石-1作为催化剂的2-丁醇脱水的反应动力学。

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