Abstract
Comparative catalytic liquid-phase benzylation of aromatic compouds (e.g., benzene and ethylbenzene) to diphenylmethane (DPM) derivatives with benzyl alcohol (BnOH) was investigated over various catalysts like zeolite (HSZ 600 mordenite, CBV 20A mor denite, H-beta zeolites with Si/Al ratios of 10.8 and 35.8, respectively) and nano - structured inorganic fluorides (MgF 2) at 80-120 °C under atmospheric pressure. The reactions were carried out in batch reactors using two methodologies: (i) by introducing both the solution of substrate and BnOH at the beginning of the reaction, and (ii) by drop-wise addition of BnOH (1-2 drops/min for 4 h) to the reaction mixture. The analysis of the reaction products indicated that the conversion and product distribution depend on the experimental method and the nature of the catalyst. The reaction rate was found to correlate to the nucleo - philicity of the substrates and their ability to delocalize the positive charge in the Wheland intermediate by inductive and resonance effects. © 2012 IUPAC.
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Candu, N., Wuttke, S., Kemnitz, E., Coman, S. M., & Parvulescu, V. I. (2012). Replacing benzyl chloride with benzyl alcohol in heterogeneous catalytic benzylation of aromatic compounds. Pure and Applied Chemistry, 84(3), 427–437. https://doi.org/10.1351/PAC-CON-11-09-34
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