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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Modelling active sites for the Beckmann rearrangement reaction in boron-containing zeolites and their interaction with probe molecules
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Modelling active sites for the Beckmann rearrangement reaction in boron-containing zeolites and their interaction with probe molecules

机译:建模含硼沸石中贝克曼重排反应的活性位及其与探针分子的相互作用

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摘要

Theoretical calculations and in situ solid state NMR spectroscopy have been combined to get insight on the nature of the active sites for the Beckmann rearrangement reaction in borosilicate zeolites. The interaction of a B site in zeolite Beta with a series of probe molecules (ammonia, pyridine, acetone and water) has been modelled and the ~(15)N and ~(11)B NMR isotropic chemical shift of the resulting complexes calculated and compared with experimental in situ NMR results. This approach has allowed validation of the methodology to model the adsorption on a zeolite boron site of molecules of varying basicity which are either protonated or non-protonated. The limitation is that theoretical calculations overestimate the effect of molecular adsorption through hydrogen bonds on the calculated isotropic ~(11)B NMR chemical shift.Theoretical and experimental results on the adsorption of acetophenone and cyclohexanone oximes on zeolite B-Beta indicate that Bransted acid sites protonate the oximes, changing the boron coordination from trigonal to tetrahedral. Comparison of theoretical and experimental ~(15)N NMR chemical shifts of the adsorbed amides (acetanilide and ε-caprolactam) indicates that they are non-protonated, and the ~(11)B NMR spectra show that, as expected, boron remains in trigonal coordination with an isotropic δ ~(11)B_(exp) which differs from the calculated value δ ~(11)B_(calc).
机译:理论计算和原位固态NMR光谱相结合,以了解硼硅酸盐沸石中贝克曼重排反应的活性位点的性质。已经对B型沸石中B位点与一系列探针分子(氨,吡啶,丙酮和水)的相互作用进行了建模,并计算了所得配合物的〜(15)N和〜(11)B NMR各向同性化学位移,并与实验原位NMR结果进行比较。该方法允许对模拟质子化或非质子化的碱性不同的分子在沸石硼位上的吸附进行建模的方法学的验证。局限性在于理论计算高估了氢键分子吸附对所计算的各向同性〜(11)B NMR化学位移的影响。苯乙酮和环己酮肟在B-β沸石上的吸附理论和实验结果表明布朗斯台德酸位使肟质子化,将硼配位从三角变为四面体。吸附酰胺(乙酰苯胺和ε-己内酰胺)的理论和实验〜(15)N NMR化学位移的比较表明,它们是非质子化的,〜(11)B NMR光谱表明,正如所预期的,硼保留在各向同性δ〜(11)B_(exp)的三角坐标与计算值δ〜(11)B_(calc)不同。

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