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Direct observation of tin sites and their reversible interconversion in zeolites by solid-state NMR spectroscopy

机译:固态NMR光谱法直接观察沸石中锡位及其可逆的相互转化

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Metal-substituted zeolites are an important type of solid Lewis acid with a wide range of applications. Despite the importance of this type of catalyst, identifying active sites can be challenging because different types of metal sites experience similar environments in zeolites. Here we show direct observation of different tin sites in Sn-β zeolite. Two types of open tin sites are unambiguously identified via correlating the hydroxyl groups to Sn atoms with one- and two-dimensional proton-detected 1H/119Sn correlation solid-state NMR spectroscopy, which only amounts to ca. 17% of the total tin content. A reversible transformation between the open and closed tin site is observed. The results provide valuable insights into the nature of tin sites in Sn-β zeolite and open an avenue for the use of proton-detected solid-state NMR methods for characterization of metal sites in zeolite catalysts.
机译:金属取代的沸石是固体路易斯酸的重要类型,具有广泛的应用范围。尽管这种类型的催化剂很重要,但由于不同类型的金属位点在沸石中会经历相似的环境,因此确定活性位点可能仍然具有挑战性。在这里,我们显示了对Sn-β沸石中不同锡位点的直接观察。通过一维和二维质子检测的1H / 119Sn相关固态NMR光谱,通过将羟基与Sn原子相关联,可以明确地识别出两种类型的开放锡位点。总锡含量的17%。观察到开放和封闭的锡位点之间可逆转变。结果为Sn-β沸石中锡位点的性质提供了宝贵的见解,并为使用质子检测的固态NMR方法表征沸石催化剂中金属位点开辟了道路。

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