首页> 外文期刊>Journal of the American Chemical Society >Specificity of Sites within Eight-Membered Ring Zeolite Channels for Carbonylation of Methyls to Acetyls
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Specificity of Sites within Eight-Membered Ring Zeolite Channels for Carbonylation of Methyls to Acetyls

机译:八元环沸石通道内位点甲基化为乙酰基的特异性。

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The acid-catalyzed formation of carbon-carbon bonds from C_1 precursors via CO insertion into chemisorbed methyl groups occurs selectively within eight-membered ring (8-MR) zeolite channels. This elementary step controls catalytic carbonylation rates of dimethyl ether (DME) to methyl acetate. The number of O-H groups within 8-MR channels was measured by rigorous deconvolution of the infrared bands for O-H groups in cation-exchanged and acid forms of mordenite (M,H-MOR) and ferrierite (H-FER) after adsorption of basic probe molecules of varying size. DME carbonylation rates are proportional to the number of O-H groups within 8-MR channels. Na~+ cations selectively replaced protons within 8-MR channels and led to a disproportionate decrease in carbonylation turnover rates (per total H~+). These conclusions are consistent with the low or undetectable rates of carbonylation on zeolites without 8-MR channels (H-BEA, H-FAU, H-MFI). Such specificity of methyl reactivity upon confinement within small channels appears to be unprecedented in catalysis by microporous solids, which typically select reactions by size exclusion of bulkier transition states.
机译:经由CO插入化学吸附的甲基中的C_1前体的酸催化碳-碳键形成选择性地发生在八元环(8-MR)沸石通道内。该基本步骤控制二甲醚(DME)转化为乙酸甲酯的催化羰基化速率。吸附碱性探针后,通过阳离子交换和酸性形式的丝光沸石(M,H-MOR)和镁碱沸石(H-FER)中的OH基团的红外光谱带的严格解卷积,测量8-MR通道中的OH基团数大小各异的分子。 DME羰基化速率与8-MR通道中O-H基团的数量成正比。 Na +阳离子选择性地取代了8-MR通道内的质子,并导致羰基化转化率(相对于总H +)不成比例地下降。这些结论与没有8-MR通道(H-BEA,H-FAU,H-MFI)的沸石上羰基化反应率低或无法检测到一致。局限于小通道内时,这种甲基反应活性的特异性在微孔固体催化中似乎是空前的,微孔固体通常通过排除体积较大的过渡态来选择反应。

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