Lyaskovskyy Volodymyr, Fröhlich Roland, Würthwein Ernst-Ulrich
Organisch-Chemisches Institut, Westfälische Wilhelms-Universität, Corrensstrasse 40, 48149 Münster, Germany.
Chemistry. 2007;13(11):3113-9. doi: 10.1002/chem.200601491.
Deprotonation of benzothiophene-derived alkynyl imine 11 with lithium diisopropylamide (LDA) and subsequent transmetalation with ZnCl2 etherate furnished azepine 12 upon aqueous workup. Similarly, alkynyl benzaldimine 1a gave a mixture of benzazepine 13 and naphthylamine 14. Allylic benzonitriles 15 a,b reacted to produce naphthylamine 16 upon deprotonation with LDA at room temperature. In an analogous manner, imino benzonitrile 17 may be converted into 4-amino isoquinoline 18 by means of an intramolecular nucleophilic attack on the nitrile function upon treatment with LDA. The allylic benzonitriles 19 a,b were prepared by LDA treatment of alkynyl imine 11. They were further converted to amino dibenzothiophene 20 by LDA deprotonation and aqueous workup. These various transformations represent the key steps of a multistep reaction cascade, which was previously postulated on the basis of quantum chemical calculations. Thus, all features of this complex rearrangement mechanism could now be confirmed experimentally. DFT calculations support the lower reactivity of zinc species in the ring-opening step compared to the lithium intermediates. All new compounds were completely characterized by spectroscopic data, including X-ray diffraction studies for the key compounds 12, 19 a, and 20.
用二异丙基氨基锂(LDA)使苯并噻吩衍生的炔基亚胺11去质子化,随后用氯化锌醚化物进行转金属化反应,经水后处理得到氮杂卓12。类似地,炔基苯甲醛亚胺1a生成了苯并氮杂卓13和萘胺14的混合物。烯丙基苯甲腈15 a、b在室温下用LDA去质子化后反应生成萘胺16。以类似的方式,亚氨基苯甲腈17在用LDA处理时,通过对腈官能团进行分子内亲核进攻可转化为4-氨基异喹啉18。烯丙基苯甲腈19 a、b通过用LDA处理炔基亚胺11制备。它们通过LDA去质子化和水后处理进一步转化为氨基二苯并噻吩20。这些各种转化代表了一个多步反应级联的关键步骤,该反应级联先前是基于量子化学计算推测出来的。因此,现在可以通过实验证实这种复杂重排机制的所有特征。密度泛函理论计算支持锌物种在开环步骤中比锂中间体的反应活性更低。所有新化合物都通过光谱数据进行了全面表征,包括对关键化合物12、19 a和20的X射线衍射研究。