Department of Chemistry and Research Center for Smart Molecules, Rikkyo University, 13-34-1 Nishi-Ikebukuro, Toshima-ku, Tokyo 171-8501, Japan.
Chem Asian J. 2011 Feb 1;6(2):510-6. doi: 10.1002/asia.201000596. Epub 2010 Dec 22.
The enantioselective Friedel-Crafts reaction of indoles with nitroalkenes proceeds catalytically by means of a chiral-phosphoric-acid catalyst to afford products with high enantioselectivities (up to 91% ee). The use of a 3,3'-SiPh(3)-substituted (R)-binol-derived (binol=1,1'-binaphthyl-2,2'-diol) catalyst and a free indole that bears an N-H moiety is essential to achieving high enantioselectivity as well as high yield. To elucidate the reaction mechanism and the origin of the high enantioselectivity, DFT calculations were carried out. The reaction proceeded through a cyclic transition state formed by the two-point binding of both substrates to the conjugated O-P-O moiety of the catalyst, in which indoles and nitroalkenes could be simultaneously activated by Brønsted acidic (proton) and basic (phosphoryl oxygen) sites, respectively. The enantioselectivity was entirely controlled by the steric effect between the 3,3'-substituent group on the (R)-binol-derived phosphoric acid catalyst and the indole ring. When the sterically demanding SiPh(3) group was used as the 3,3'-substituent group, the energy difference between the most-stable diastereomeric transition states that afforded the S and R products was increased to lead to the high enantioselectivity in agreement with the experimental results.
吲哚与硝基烯烃的对映选择性 Friedel-Crafts 反应通过手性磷酸催化剂催化进行,以高对映选择性(高达 91%ee)得到产物。使用 3,3'-SiPh(3)取代的(R)-BINOL 衍生(BINOL=1,1'-联萘-2,2'-二醇)催化剂和带有 N-H 部分的游离吲哚对于实现高对映选择性和高收率是必不可少的。为了阐明反应机理和高对映选择性的起源,进行了 DFT 计算。反应通过两个底物与催化剂的共轭 O-P-O 部分的两点结合形成的环状过渡态进行,其中吲哚和硝基烯烃可以分别被 Brønsted 酸性(质子)和碱性(磷酸氧)位同时激活。对映选择性完全由(R)-BINOL 衍生的磷酸催化剂上的 3,3'-取代基与吲哚环之间的空间效应控制。当使用空间位阻较大的 SiPh(3)基团作为 3,3'-取代基时,导致 S 和 R 产物的最稳定非对映过渡态之间的能量差增加,从而与实验结果一致,导致高对映选择性。