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酸催化的萘顺-1,2-二氢二醇脱水:3-取代基共振效应受损的起源。

Acid-catalyzed dehydration of naphthalene-cis-1,2-dihydrodiols: origin of impaired resonance effect of 3-substituents.

机构信息

School of Chemistry and Chemical Biology, University College Dublin, Belfield, Dublin 4, Ireland.

出版信息

J Org Chem. 2011 Nov 18;76(22):9338-43. doi: 10.1021/jo201591r. Epub 2011 Oct 24.

Abstract

Acid-catalyzed dehydrations of substituted naphthalene-cis-1,2-dihydrodiols occur with loss of the 1- or 2-OH group to form 2- and 1-naphthols, respectively. Effects of substituents MeO, Me, H, F, Br, I, and CN at 3-, 6-, and 7-positions of the naphthalene ring are consistent with rate-determining formation of β-hydroxynaphthalenium ion (carbocation) intermediates. For reaction of the 1-hydroxyl group the 3-substituents are correlated by the Yukawa-Tsuno relationship with ρ = -4.7 and r = 0.25 or by σ(p) constants with ρ = -4.25; for reaction of the 2-hydroxyl group the 3-substituents are correlated by σ(m) constants with ρ = -8.1. The correlations for the 1-hydroxyl imply a surprisingly weak resonance interaction of +M substituents (MeO, Me) with a carbocation reaction center but are consistent with the corresponding correlation for acid-catalyzed dehydration of 3-substituted benzene-cis-1,2-dihydrodiols for which ρ = -6.9 and r = 0.43. Substituents at the 6- and 7-positions of the naphthalene rings by contrast are correlated by σ(+) with ρ = -3.2 for reaction of the 1-hydroxyl group and ρ = -2.7 for reaction of the 2-hydroxyl group. The unimpaired resonance implied by these substituent effects appears to be inconsistent with a previous explanation of the weak resonance of the 3-substituents in terms of imbalance of charge development and/or nonplanarity of the benzenium ring in the transition state. An alternative possibility is that the adjacent hydroxyl group interferes sterically with conjugation of +M substituents. "Hyperaromaticity" of the arenium ion intermediates does not appear to be a factor influencing this behavior.

摘要

取代的萘顺-1,2-二氢二醇在酸催化下发生脱水反应,分别失去 1-或 2-OH 基团,形成 2-和 1-萘酚。萘环 3-、6-和 7-位取代基 MeO、Me、H、F、Br、I 和 CN 的影响与β-羟基萘翁离子(碳正离子)中间体的形成速率决定一致。对于 1-羟基的反应,3-取代基通过 Yukawa-Tsuno 关系相关,ρ = -4.7,r = 0.25,或者通过 σ(p)常数相关,ρ = -4.25;对于 2-羟基的反应,3-取代基通过 σ(m)常数相关,ρ = -8.1。对于 1-羟基的相关性表明,+M 取代基(MeO、Me)与碳正离子反应中心的共振相互作用令人惊讶地弱,但与酸催化 3-取代苯顺-1,2-二氢二醇脱水反应的相应相关性一致,后者的 ρ = -6.9,r = 0.43。相比之下,萘环 6-和 7-位的取代基通过 σ(+)相关,ρ = -3.2 用于 1-羟基的反应,ρ = -2.7 用于 2-羟基的反应。这些取代基效应所暗示的未受干扰的共振似乎与之前用电荷发展不平衡和/或过渡态中环庚二烯环的非平面性来解释 3-取代基的弱共振的解释不一致。另一种可能性是相邻的羟基基团在空间上干扰了+M 取代基的共轭。芳基翁离子中间体的“超芳香性”似乎不是影响这种行为的因素。

相似文献

1
Acid-catalyzed dehydration of naphthalene-cis-1,2-dihydrodiols: origin of impaired resonance effect of 3-substituents.
J Org Chem. 2011 Nov 18;76(22):9338-43. doi: 10.1021/jo201591r. Epub 2011 Oct 24.
3
Hyperaromatic stabilization of arenium ions: acid-catalyzed dehydration of 2-substituted 1,2-dihydro-1-naphthols.
J Org Chem. 2012 Jan 6;77(1):563-72. doi: 10.1021/jo2020483. Epub 2011 Dec 13.

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