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联萘酚的区域选择性取代

Regioselective Substitution of BINOL.

作者信息

Pu Lin

机构信息

Department of Chemistry, University of Virginia, Charlottesville, Virginia 22904, United States.

出版信息

Chem Rev. 2024 May 22;124(10):6643-6689. doi: 10.1021/acs.chemrev.4c00132. Epub 2024 May 9.

Abstract

1,1'-Bi-2-naphthol (BINOL) has been extensively used as the chirality source in the fields of molecular recognition, asymmetric synthesis, and materials science. The direct electrophilic substitution at the aromatic rings of the optically active BINOL has been developed as one of the most convenient strategies to structurally modify BINOL for diverse applications. High regioselectivity has been achieved for the reaction of BINOL with electrophiles. Depending upon the reaction conditions and substitution patterns, various functional groups can be introduced to the specific positions, such as the 6-, 5-, 4-, and 3-positions, of BINOL. Ortho-lithiation at the 3-position directed by the functional groups at the 2-position of BINOL have been extensively used to prepare the 3- and 3,3'-substituted BINOLs. The use of transition metal-catalyzed C-H activation has also been explored to functionalize BINOL at the 3-, 4-, 5-, 6-, and 7-positions. These regioselective substitutions of BINOL have allowed the construction of tremendous amount of BINOL derivatives with fascinating structures and properties as reviewed in this article. Examples for the applications of the optically active BINOLs with varying substitutions in asymmetric catalysis, molecular recognition, chiral sensing and materials are also provided.

摘要

1,1'-联二萘酚(BINOL)已被广泛用作分子识别、不对称合成和材料科学领域的手性源。在光学活性BINOL的芳环上进行直接亲电取代反应,已发展成为对BINOL进行结构修饰以用于多种应用的最便捷策略之一。BINOL与亲电试剂的反应已实现了高区域选择性。根据反应条件和取代模式,可以将各种官能团引入到BINOL的特定位置,例如6-、5-、4-和3-位。由BINOL 2-位的官能团导向的3-位邻位锂化反应已被广泛用于制备3-和3,3'-取代的BINOL。人们也探索了使用过渡金属催化的C-H活化反应,使BINOL在3-、4-、5-、6-和7-位官能化。如本文所综述,BINOL的这些区域选择性取代反应使得能够构建大量具有迷人结构和性质的BINOL衍生物。本文还提供了具有不同取代基的光学活性BINOL在不对称催化、分子识别、手性传感和材料方面的应用实例。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d7c4/11117191/806bb70e80e5/cr4c00132_0005.jpg

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