Pu Lin
Department of Chemistry, University of Virginia , Charlottesville, Virginia 22904-4319, United States.
Acc Chem Res. 2014 May 20;47(5):1523-35. doi: 10.1021/ar500020k. Epub 2014 Apr 16.
Chiral alcohols are ubiquitous in organic structures. One efficient method to generate chiral alcohols is the catalytic asymmetric addition of a carbon nucleophile to a carbonyl compound since this process produces a C-C bond and a chiral center simultaneously. In comparison with the carbon nucleophiles such as an organolithium or a Grignard reagent, an organozinc reagent possesses the advantages of functional group tolerance and more mild reaction conditions. Catalytic asymmetric reactions of aldehydes with arylzincs, vinylzincs, and alkynylzincs to generate functional chiral alcohols are discussed in this Account. Our laboratory has developed a series of 1,1'-bi-2-naphthol (BINOL)-based chiral catalysts for the asymmetric organozinc addition to aldehydes. It is found that the 3,3'-dianisyl-substituted BINOLs are not only highly enantioselective for the alkylzinc addition to aldehydes, but also highly enantioselective for the diphenylzinc addition to aldehydes. A one-step synthesis has been achieved to incorporate Lewis basic amine groups into the 3,3'-positions of the partially hydrogenated H8BINOL. These H8BINOL-amine compounds have become more generally enantioselective and efficient catalysts for the diphenylzinc addition to aldehydes to produce various types of chiral benzylic alcohols. The application of the H8BINOL-amine catalysts is expanded by using in situ generated diarylzinc reagents from the reaction of aryl iodides with ZnEt2, which still gives high enantioselectivity and good catalytic activity. Such a H8BINOL-amine compound is further found to catalyze the highly enantioselective addition of vinylzincs, in situ generated from the treatment of vinyl iodides with ZnEt2, to aldehydes to give the synthetically very useful chiral allylic alcohols. We have discovered that the unfunctionalized BINOL in combination with ZnEt2 and Ti(O(i)Pr)4 can catalyze the terminal alkyne addition to aldehydes to produce chiral propargylic alcohols of high synthetic utility. The reaction was conducted by first heating an alkyne with ZnEt2 in refluxing toluene to generate an alkynylzinc reagent, which can then add to a broad range of aldehydes at room temperature in the presence of BINOL and Ti(O(i)Pr)4 with high enantioselectivity. It was then found that the addition of a catalytic amount of dicyclohexylamine (Cy2NH) allows the entire process to be conducted at room temperature without the need to generate the alkynylzincs at elevated temperature. This BINOL-ZnEt2-Ti(O(i)Pr)4-Cy2NH catalyst system can be used to catalyze the reaction of structurally diverse alkynes with a broad range of aldehydes at room temperature with high enantioselectivity and good catalytic activity. The work described in this Account demonstrates that BINOL and its derivatives can be used to develop highly enantioselective catalysts for the asymmetric organozinc addition to aldehydes. These processes have allowed the efficient synthesis of many functional chiral alcohols that are useful in organic synthesis.
手性醇广泛存在于有机结构中。生成手性醇的一种有效方法是将碳亲核试剂催化不对称加成到羰基化合物上,因为这一过程能同时形成一个碳 - 碳键和一个手性中心。与有机锂或格氏试剂等碳亲核试剂相比,有机锌试剂具有官能团耐受性好和反应条件更温和的优点。本综述讨论了醛与芳基锌、乙烯基锌和炔基锌的催化不对称反应以生成官能化手性醇。我们实验室已开发出一系列基于1,1'-联二萘酚(BINOL)的手性催化剂用于醛的不对称有机锌加成反应。研究发现,3,3'-二茴香基取代的BINOLs不仅对醛的烷基锌加成反应具有高对映选择性,而且对醛的二苯基锌加成反应也具有高对映选择性。已实现将路易斯碱性胺基一步引入到部分氢化的H8BINOL的3,3'-位。这些H8BINOL - 胺化合物已成为用于醛的二苯基锌加成反应以生成各种类型手性苄醇的更具普遍对映选择性和高效的催化剂。通过使用由芳基碘化物与ZnEt2反应原位生成的二芳基锌试剂,H8BINOL - 胺催化剂的应用得以扩展,该反应仍具有高对映选择性和良好的催化活性。进一步发现,这样的H8BINOL - 胺化合物能催化由乙烯基碘化物与ZnEt2处理原位生成的乙烯基锌对醛的高度对映选择性加成反应,生成合成上非常有用的手性烯丙醇。我们发现未官能化的BINOL与ZnEt2和Ti(O(i)Pr)4组合可催化末端炔烃加成到醛上,生成具有高合成实用性的手性炔丙醇。该反应首先在回流甲苯中加热炔烃与ZnEt2以生成炔基锌试剂进行进行,然后在BINOL和Ti(O(i)Pr)4存在下,该炔基锌试剂可在室温下以高对映选择性加成到多种醛上。随后发现,加入催化量的二环己基胺(Cy2NH)可使整个过程在室温下进行,而无需在高温下生成炔基锌。这种BINOL - ZnEt2 - Ti(O(i)Pr)4 - Cy2NH催化剂体系可用于在室温下催化结构多样的炔烃与多种醛的反应,具有高对映选择性和良好的催化活性。本综述中描述的工作表明,BINOL及其衍生物可用于开发醛的不对称有机锌加成反应的高对映选择性催化剂。这些方法已实现了许多在有机合成中有用的官能化手性醇的高效合成。