Naka Hiroshi, Morey James V, Haywood Joanna, Eisler Dana J, McPartlin Mary, García Felipe, Kudo Hironaga, Kondo Yoshinori, Uchiyama Masanobu, Wheatley Andrew E H
Graduate School of Pharmaceutical Sciences, Tohoku University, Aobayama, Aoba-ku, Sendai 980-8578, Japan.
J Am Chem Soc. 2008 Dec 3;130(48):16193-200. doi: 10.1021/ja804749y.
The mechanisms by which directed ortho metalation (DoM) and postmetalation processes occur when aromatic compounds are treated with mixed alkylamido aluminate i-Bu3Al(TMP)Li (TMP-aluminate 1; TMP = 2,2,6,6-tetramethylpiperidide) have been investigated by computation and X-ray diffraction. Sequential reaction of ArC(=O)N(i-Pr)2 (Ar = phenyl, 1-naphthyl) with t-BuLi and i-Bu3Al in tetrahydrofuran affords [2-(i-Bu3Al)C(m)H(n)C(=O)N(i-Pr)2]Li x 3 THF (m = 6, n = 4, 7; m = 10, n = 6, 8). These data advance the structural evidence for ortho-aluminated functionalized aromatics and represent model intermediates in DoM chemistry. Both 7 and 8 are found to resist reaction with HTMP, suggesting that ortho-aluminated aromatics are incapable of exhibiting stepwise deprotonative reactivity of the type recently shown to pertain to the related field of ortho zincation chemistry. Density functional theory calculations corroborate this view and reveal the existence of substantial kinetic barriers both to one-step alkyl exchange and to amido-alkyl exchange after an initial amido deprotonation reaction by aluminate bases. Rationalization of this dichotomy comes from an evaluation of the inherent Lewis acidities of the Al and Zn centers. As a representative synthetic application of this high kinetic reactivity of the TMP-aluminate, the highly regioselective deprotonative functionalization of unsymmetrical ketones both under mild conditions and at elevated temperatures is also presented.
通过计算和X射线衍射研究了芳香族化合物用混合烷基酰胺铝酸酯i-Bu3Al(TMP)Li(TMP-铝酸酯1;TMP = 2,2,6,6-四甲基哌啶)处理时定向邻位金属化(DoM)和金属化后过程发生的机制。ArC(=O)N(i-Pr)2(Ar = 苯基,1-萘基)与t-BuLi和i-Bu3Al在四氢呋喃中依次反应得到[2-(i-Bu3Al)C(m)H(n)C(=O)N(i-Pr)2]Li·3THF(m = 6,n = 4,7;m = 10,n = 6,8)。这些数据推进了邻位铝化官能化芳烃的结构证据,并代表了DoM化学中的模型中间体。发现7和8都能抵抗与HTMP的反应,这表明邻位铝化芳烃不能表现出最近在邻位锌化化学相关领域中显示的那种逐步去质子反应活性。密度泛函理论计算证实了这一观点,并揭示了在铝酸酯碱进行初始酰胺去质子化反应后,一步烷基交换和酰胺-烷基交换都存在相当大的动力学障碍。这种二分法的合理化源于对Al和Zn中心固有路易斯酸度的评估。作为TMP-铝酸酯这种高动力学反应活性的代表性合成应用,还展示了在温和条件和高温下不对称酮的高度区域选择性去质子官能化。