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Addition Mechanisms of Phenol toward Formaldehyde under Acidic Condition: a Theoretical Investigation
引用本文:徐文凤,熊姗姗,施豫庆,李涛洪,杜官本,谢小光.Addition Mechanisms of Phenol toward Formaldehyde under Acidic Condition: a Theoretical Investigation[J].结构化学,2012,31(6):821-828.
作者姓名:徐文凤  熊姗姗  施豫庆  李涛洪  杜官本  谢小光
作者单位:Department of Chemistry Yunnan University;Southwest Forestry University
基金项目:This work was supported by the Key Program of the National Nalural Science Foundation of China (30930074)
摘    要:The reaction mechanisms of phenol with formaldehyde in the first and second addition at the ortho- and para-position in acid solution were theoretically investigated at the PW91/DNP level with solvent effects included. The reaction of phenol with protonated methanediol firstly forms an adduct intermediate, via a SN2 mechanism with a water molecule as the leaving group. From the adduct intermediate, there are two reaction channels involving a proton transfer to form the addition products. One is that a proton directly transfers via a four-membered ring transition state with a notable energy barrier (Four-member mechanism). Another mechanism involving a water molecule as catalyst to mediate the proton transfer (WCP mechanism), is a barrierless process, indicating that the formation of the adduct intermediate, the first reaction step, is rate-limiting. The reaction products are free hydroxymethyl phenols and/or hydroxybenzy carbocation (HOC6H4CH2+) which plays an important role in the following formation of methylene and methylene ether linkages. The second addition reactions between formaldehyde and hydroxymethyl phenol at all possible reaction sites of the phenol ring in acid solution were also investigated and discussed.

关 键 词:phenol  formaldehyde  reaction  mechanism  acid  solution
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