School of Chemistry and Chemical Biology, University College Dublin, Belfield, Dublin 4, Ireland.
Beilstein J Org Chem. 2010 Nov 3;6:1035-42. doi: 10.3762/bjoc.6.118.
Solvolysis of trichloroacetate esters of 2-methoxy-1,2-dihydro-1-naphthols shows a remarkably large difference in rates between the cis and trans isomers, k(cis)/k(trans) = 1800 in aqueous acetonitrile. This mirrors the behaviour of the acid-catalysed dehydration of cis- and trans-naphthalene-1,2-dihydrodiols to form 2-naphthol, for which k(cis)/k(trans) = 440, but contrasts with that for solvolysis of tetrahydronaphthalene substrates, 1-chloro-2-hydroxy-1,2,3,4-tetrahydronaphthalenes, for which k(cis)/k(trans) = 0.5. Evidence is presented showing that the trans isomer of the dihydro substrates reacts unusually slowly rather than the cis isomer unusually rapidly. Comparison of rates of solvolysis of 1-chloro-1,2,3,4-tetrahydronaphthalene and the corresponding (cis) substrate with a 2-hydroxy group indicates that a β-OH slows the reaction by nearly 2000-fold, which represents a typical inductive effect characteristic also of cis-dihydrodiol substrates. The slow reaction of the trans-dihydrodiol substrate is consistent with initial formation of a β-hydroxynaphthalenium carbocation with a conformation in which a C-OH occupies an axial position β to the carbocation centre preventing stabilisation of the carbocation by C-H hyperconjugation, which would occur in the conformation initially formed from the cis isomer. It is suggested that C-H hyperconjugation is particularly pronounced for a β-hydroxynaphthalenium ion intermediate because the stability of its no-bond resonance structure reflects the presence of an aromatic naphthol structure.
2-甲氧基-1,2-二氢-1-萘酚的三氯乙酸酯的溶剂解在顺式和反式异构体之间表现出非常大的速率差异,在水-乙腈中 k(cis)/k(trans) = 1800。这与顺式和反式-1,2-萘二酚酸催化脱水形成 2-萘酚的行为相似,k(cis)/k(trans) = 440,但与四氢萘基底物的溶剂解行为形成对比,1-氯-2-羟基-1,2,3,4-四氢萘的 k(cis)/k(trans) = 0.5。有证据表明,二氢底物的反式异构体反应异常缓慢,而不是顺式异构体异常迅速。比较 1-氯-1,2,3,4-四氢萘和相应的(顺式)底物的溶剂解速率与 2-羟基基团表明,β-OH 使反应减慢近 2000 倍,这代表了典型的诱导效应,也与顺式二氢二醇底物的特征一致。反式二氢二醇底物的缓慢反应与β-羟基萘翁碳阳离子的初始形成一致,其中 C-OH 占据与碳正中心β位的轴向位置,阻止了 C-H 超共轭对碳正中心的稳定,这将发生在从顺式异构体初始形成的构象中。有人认为,β-羟基萘翁离子中间体的 C-H 超共轭作用特别明显,因为其无键共振结构的稳定性反映了存在芳香萘酚结构。