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Probing br?nsted acid sites in zeolite HY with low temperature ~(17)O MAS NMR spectroscopy

机译:用低温〜(17)O MAS NMR光谱法在沸石HY中探测Br?Nsted酸位点

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Br?nsted acid sites play a key role in controlling the catalytic performances of acidic catalysts. A determination of the structure of the acid site is fundamental to the understanding acid strength in these systems. The O-H distances in zeolite HY and HZSM-5 extracted from ~(17)O-~1H REDOR NMR data acquired at room temperature are noticeably longer than the results from calculations due to the presence of some restricted motions at room temperature, such as zeolite framework vibrations and O-H librational motion. We present here our ~(17)O-~1H REDOR NMR results of zeolite HY at a lower temperature of 183 K, where some of these motions are frozen out. By comparing the line shapes obtained from simulations performed with the SIMPSON package with the experimental data, an O-H distance of about 0.97 ~ 0.98 A was obtained, which is consistent with the previous ab-initio calculation results. The results indicate that low temperature REDOR NMR spectroscopy can provide estimates of the O-H distance, which should prove useful in understanding zeolite structure and acidity.
机译:BRαnsted酸部位在控制酸性催化剂的催化性能方面发挥关键作用。酸部位结构的测定是对这些系统中的理解酸强度的基础。在室温下取出的沸石HY和HzSM-5中的OH距离从室温获得的〜(17)O-〜1H REDOR NMR数据显着长于根据室温在室温下存在一些限制运动的计算结果,例如沸石框架振动和哦展示动作。我们在这里介绍我们的〜(17)O-〜1H REDOR REDOR NMR NMR结果在183 k的较低温度下的沸石HY,其中一些动作被冻结出来。通过将从SIMPSON封装与实验数据的模拟中获得的线形状进行比较,获得约0.97〜0.98A的O-H距离,这与先前的AB-ININIO计算结果一致。结果表明,低温REDOR NMR光谱可以提供O-H距离的估计,这应该证明在理解沸石结构和酸度方面是有用的。

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