首页> 外文期刊>The Journal of Organic Chemistry >Stereoelectronic Effects in Ring-Chain Tautomerism of 1,3-Diarylnaphth[1,2-e][1,3]oxazines and 3-Alkyl-1-arylnaphtht 1,2-e] [1, 3]oxazines
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Stereoelectronic Effects in Ring-Chain Tautomerism of 1,3-Diarylnaphth[1,2-e][1,3]oxazines and 3-Alkyl-1-arylnaphtht 1,2-e] [1, 3]oxazines

机译:1,3-二芳基萘[1,2-e] [1,3]恶嗪和3-烷基-1-芳基萘1,2-e] [1,3]恶嗪的环链互变异构中的立体电子效应

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The disubstitution effects of X and Y in 1-(Y-phenyl)-3-(X-phenyl)-2,3-dihydro-1H-naphth[1,2-e]-[1,3]oxazines on the ring-chain tautomerism, the delocalization of the nitrogen lone pair (anomeric effect), and the ~(13)C NMR chemical shifts were analyzed by using multiple linear regression analysis. Study of the three-component equilibrium B ←→ A ←→ C revealed that the chain ←→ trans (A ←→ B) equilibrium constants are significantly influenced by the inductive effect (σ_F) of substituent Y on the 1-phenyl ring. In contrast, no significant substituent dependence on Y was observed for the chain ←→ cis (A ←→ C) equilibrium. There was an analogous dependence for the epimerization (C ←→ B) constants of 1-(Y-phenyl)-3-alkyl-2,3-dihydro-1H-naphth[1,2-e][1,3]oxazines. With these model compounds, significant overlapping energies of the nitrogen lone pair was observed by NBO analysis in the trans forms B (to σ*_(C1-C1'), σ*_(C1-C10b), and σ*_(C3-O4)) and in the cis forms C (toσ*_(C1-H), σ*_(C1-C10b), and σ*_(C3-O4)). The effects of disubstitution revealed some characteristic differences between the cis and trans isomers. However, the results do not suggest that the anomeric effect predominates in the preponderance of the trans over the cis isomer. When the ~(13)C chemical shift changes induced by substituents X and Y (SCS) were subjected to multiple linear regression analysis, negative ρ_F~Y and ρ_F~X values were observed at C-1 and C-3 for both the cis and trans isomers. In contrast, the positive ρ_R~Y values at C-1 and the negative ρ_R~X values at C-3 observed indicated the contribution of resonance structures f (ρ_R > 0) and g (ρ_R < 0), respectively. The classical double bond―no-bond resonance structures proved useful in explaining the substituent sensitivities of the donation energies and the behavior of the SCS values.
机译:X和Y在1-(Y-苯基)-3-(X-苯基)-2,3-二氢-1H-萘[1,2-e]-[1,3]恶嗪上的去环作用链线性互变异构,氮孤对的离域(端基异构效应)和〜(13)C NMR化学位移通过使用多元线性回归分析进行了分析。对三组分平衡B←→A←→C的研究表明,链←→反式(A←→B)平衡常数受取代基Y在1-苯环上的诱导作用(σ_F)的影响很大。相反,对于链←→顺(A←→C)平衡,未观察到对Y的显着取代基依赖性。 1-(Y-苯基)-3-烷基-2,3-二氢-1H-萘[1,2-e] [1,3]恶嗪的差向异构(C←→B)常数具有类似的依赖性。使用这些模型化合物,通过NBO分析,在反式B(至σ* _(C1-C1'),σ* _(C1-C10b)和σ* _(C3)中观察到了氮孤对的显着重叠能量。 -O4))和顺式C(toσ* _(C1-H),σ* _(C1-C10b)和σ* _(C3-O4))。破坏作用揭示了顺式和反式异构体之间的一些特征差异。然而,该结果并不表明异头作用在顺式异构体上比反式异构体占优势。当对由取代基X和Y(SCS)引起的〜(13)C化学位移变化进行多元线性回归分析时,在顺式C-1和C-3处均观察到负ρ_F〜Y和ρ_F〜X值和反式异构体。相反,观察到的在C-1处的正ρ_R〜Y值和在C-3处的负ρ_R〜X值分别表明谐振结构f(ρ_R> 0)和g(ρ_R<0)。事实证明,经典的双键-无键共振结构可用于解释捐赠能量的取代基敏感性和SCS值的行为。

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