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苯并[c]菲骨架中的结构/反应性关系:取代类似物、新型碳正离子和取代衍生物的稳定离子与亲电取代(硝化、溴化)研究

Structure/reactivity relationships in the benzo[c]phenanthrene skeleton: stable ion and electrophilic substitution (nitration, bromination) study of substituted analogues, novel carbocations and substituted derivatives.

作者信息

Brulé Cédric, Laali Kenneth K, Okazaki Takao, Lakshman Mahesh K

机构信息

Department of Chemistry, Kent State University, Kent, Ohio 44242, USA.

出版信息

J Org Chem. 2007 Apr 27;72(9):3232-41. doi: 10.1021/jo0625453. Epub 2007 Mar 30.

Abstract

A series of novel carbocations were generated by low-temperature protonation of substituted benzo[c]phenanthrenes, B[c]Phs, and their charge delocalization pathways were elucidated by NMR on the basis of the magnitude of Deltadelta13C values. It has been shown that the protonation regioselectivity is strongly controlled by methoxy and hydroxyl substituents, whose directive effects override methyl substitution effects. Regiocontrol by -OMe and -OH substituents, and its stronger influence relative to methyl groups, was also observed in the nitration and bromination reactions. Charge distribution modes in the regioisomeric protonated carbocations formed via parent B[c]Ph as well as in the benzylic carbocation formed via fjord-region epoxide ring opening were deduced by gauge-invariant atomic orbital density functional theory (GIAO-DFT) and from the natural population analysis (NPA)-derived changes in charges over CHs. These patterns were compared with those derived from NMR experiments in the substituted derivatives. NMR-based charge delocalization mapping provided insight into structure/activity relationships in the methylated and fluorinated B[c]Phs. Regioselectivities observed in the nitration and bromination reactions in representative cases are the same as those via protonations. Among a group of novel nitro and bromo derivatives synthesized in this study are examples, where the nitro group is introduced into the fjord region, for which the X-ray structure could be obtained in one case.

摘要

通过对取代苯并[c]菲(B[c]Phs)进行低温质子化生成了一系列新型碳正离子,并基于(\Delta\delta^{13}C)值的大小,通过核磁共振(NMR)阐明了它们的电荷离域途径。结果表明,质子化区域选择性受甲氧基和羟基取代基的强烈控制,其导向效应超过甲基取代效应。在硝化和溴化反应中也观察到了 -OMe和 -OH取代基的区域控制及其相对于甲基更强的影响。通过规范不变原子轨道密度泛函理论(GIAO-DFT)以及基于自然布居分析(NPA)得出的碳氢键上电荷变化,推导了经由母体B[c]Ph形成的区域异构质子化碳正离子以及经由峡湾区域环氧开环形成的苄基碳正离子中的电荷分布模式。将这些模式与取代衍生物的NMR实验结果进行了比较。基于NMR的电荷离域图谱揭示了甲基化和氟化B[c]Phs中的结构/活性关系。在代表性案例中,硝化和溴化反应中观察到的区域选择性与质子化反应中的相同。在本研究中合成的一组新型硝基和溴代衍生物中,有一些例子是将硝基引入峡湾区域,其中一例获得了X射线结构。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5056/2526040/ffdf605b9ed6/nihms61936f1.jpg

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