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Quantification of acidic sites of nanoscopic hydroxylated magnesium fluorides by FTIR and (15)N MAS NMR spectroscopy

机译:通过FTIR和(15)N mas NmR光谱定量纳米级羟基化的氟化镁的酸性位点

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摘要

Lewis and Brønsted sites were quantified in a series of weak acidic hydroxylated magnesium fluorides by Fourier transform infrared spectroscopy (FTIR) and solid state nuclear magnetic resonance spectroscopy (NMR) with pyridine as probe molecule. Molar extinction coefficients, which are necessary for quantitative FTIR measurements, were calculated by an easy approach. It utilizes the fact that both signals, used for the quantification by FTIR, are caused by the same deformation vibration mode of pyridine. Comparison of quantitative FTIR experiments and quantification by NMR shows that concentrations of acidic sites determined by FTIR spectroscopy have to be interpreted with caution. Furthermore, it is shown that the transfer of molar extinction coefficients from one catalyst to another may lead to wrong results. Molar extinction coefficients and concentrations of acidic sites determined by FTIR spectroscopy are affected by grinding and probably the particle size of the sample. High temperature during FTIR experiments has further impact on the quantification results.
机译:通过以吡啶为探针分子的傅立叶变换红外光谱(FTIR)和固态核磁共振光谱(NMR),在一系列弱酸性羟基化氟化镁中量化Lewis和Brønsted的位点。摩尔消光系数是定量FTIR测量所必需的,可通过一种简便的方法来计算。它利用了这样的事实:用于FTIR定量的两个信号都是由吡啶的相同变形振动模式引起的。定量FTIR实验和NMR定量的比较表明,通过FTIR光谱测定的酸性位点浓度必须谨慎解释。此外,显示出消光系数从一种催化剂转移到另一种催化剂可能导致错误的结果。通过FTIR光谱测定的摩尔消光系数和酸性位点的浓度受研磨的影响,并且可能受样品粒径的影响。 FTIR实验期间的高温对定量结果有进一步的影响。

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