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沸石中烷烃碳氢键的活化:直接氢交换的证据

Alkane C-H bond activation in zeolites: evidence for direct protium exchange.

作者信息

Truitt Matthew J, Toporek Stan S, Rovira-Truitt Rosimar, White Jeffery L

机构信息

Department of Chemistry, Oklahoma State University, Stillwater, OK 74078, USA.

出版信息

J Am Chem Soc. 2006 Feb 15;128(6):1847-52. doi: 10.1021/ja0558802.

Abstract

The mechanism of alkane C-H bond activation in heterogeneous acid catalysis is unknown. (1)H solid-state NMR techniques have been used to simultaneously detect the reactivity of both catalyst and alkane reactant protons in a true in-situ experimental design. Specifically, the activation of isobutane C-H bonds by the solid acid zeolite HZSM-5 is directly observed, and the rate of proton transfer between the solid catalyst surface and gaseous isobutane is quantitatively measured using isotopic (1)H/(2)H exchange methods. An observable adsorption complex forms between the isobutane and the primary Bronsted acid site of ZSM-5, which leads to proton exchange between the zeolite surface and the isobutane methyl groups at temperatures (273 K) much lower than previously reported. The secondary acid site in ZSM-5 is less accessible to or less reactive with the isobutane molecule. Simultaneous detection of protium loss from the Bronsted acid site and protium gain by perdeuterated isobutane reveals a common rate constant equal to 4.1-4.6 x 10(-4) s(-1) at 298 K, but at lower temperatures, the transition between this and a much slower rate process is resolved. The measured activation energy for isobutane H/D exchange is 57 kJ/mol. In all experiments, the isobutane reagent was purified to eliminate any unsaturated impurities that might serve as initiators for carbenium-ion mechanisms, and the active catalyst was free of any organic contaminants that might serve as a source of unsaturated initiators. In total, our results are consistent with direct proton exchange between the zeolite surface and the methyl groups of isobutane.

摘要

多相酸催化中烷烃C-H键活化的机制尚不清楚。采用(1)H固体核磁共振技术,在真实的原位实验设计中同时检测催化剂和烷烃反应物质子的反应活性。具体而言,直接观察到固体酸沸石HZSM-5对异丁烷C-H键的活化作用,并使用同位素(1)H/(2)H交换方法定量测量了固体催化剂表面与气态异丁烷之间的质子转移速率。异丁烷与ZSM-5的一级布朗斯台德酸位点之间形成了可观察到的吸附络合物,这导致在比先前报道的温度(273 K)低得多的温度下,沸石表面与异丁烷甲基之间发生质子交换。ZSM-5中的二级酸位点较难与异丁烷分子接触或反应活性较低。同时检测布朗斯台德酸位点的氢损失和氘代异丁烷的氢增加,发现在298 K时共同速率常数等于4.1-4.6×10^(-4) s^(-1),但在较低温度下,该速率与慢得多的速率过程之间的转变得到了解析。测量得到异丁烷H/D交换的活化能为57 kJ/mol。在所有实验中,异丁烷试剂都经过了纯化,以消除任何可能作为碳正离子机制引发剂的不饱和杂质,活性催化剂不含任何可能作为不饱和引发剂来源的有机污染物。总的来说,我们的结果与沸石表面和异丁烷甲基之间的直接质子交换一致。

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