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Shape-selective diisopropylation of naphthalene in H-Mordenite: Myth or reality?

机译:H-丝光沸石中萘的形状选择性二异丙基化:神话还是现实?

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Selective diisopropylation of naphthalene to 2,6-diisopropylnaphthalene is a challenging goal in sustainable catalysis. Ultrastable Y and H-Mordenite zeolites are the best catalysts reported in the literature with respect to 2,6-diisopropylnaphthalene selectivity. It is generally accepted that in the case of H-Mordenite, shape-selectivity is responsible for the observed 2,6-diisopropylnaphthalene selectivity, while on Ultrastable Y-zeolite, the observed selectivity reflects the internal thermodynamic equilibrium of positional isomers. Revisiting both the experimental and the computational work in this field now leads to the conclusion that shape-selectivity of whatever kind can be ruled out in the case of H-Mordenite. H-Mordenite catalysts produce usually a kinetically controlled mixture of diisopropylnaphthalene isomers which can shift to the direction of a thermodynamical distribution at high reaction temperatures or over more active catalysts.
机译:萘选择性二异丙基化为2,6-二异丙基萘是可持续催化的一个挑战性目标。就2,6-二异丙基萘的选择性而言,超稳定的Y和H-丝光沸石是文献中报道的最佳催化剂。通常认为,对于H-丝光沸石,形状选择性是观察到的2,6-二异丙基萘选择性的原因,而在超稳定Y型沸石上,观察到的选择性反映了位置异构体的内部热力学平衡。现在回顾该领域的实验和计算工作得出的结论是,在H-丝光沸石的情况下,可以排除任何形状的形状选择性。 H-丝光沸石催化剂通常产生二异丙基萘异构体的动力学控制混合物,该混合物可在高反应温度下或在活性更高的催化剂上转变为热力学分布的方向。

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