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Synthesis of Non-Racemic Pyrazolines and Pyrazolidines by 3+2 Cycloadditions of Azomethine Imines

机译:3 + 2苯甲亚胺亚胺的环加成反应合成非放射性吡唑啉和吡唑烷

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摘要

Asymmetric [3+2] cycloadditions of azomethine imines comprise a useful synthetic tool for the construction of pyrazole derivatives with a variable degree of saturation and up to three stereogenic centers. As analogues of pyrrolidines and imidazolidines that are abundant among natural products, pyrazoline and pyrazolidine derivatives represent attractive synthetic targets due to their extensive applications in the chemical and medicinal industries. Following the increased understanding of the mechanistic aspect of metal-catalyzed and organocatalyzed [3+2] cycloadditions of 1,3-dipoles gained over recent years, significant strides have been taken to design and develop new protocols that proceed efficiently under mild synthetic conditions and duly benefit from superior functional group tolerance and selectivity. In this review, we represent the current state of the art in this field and detailed methods for the synthesis of non-racemic pyrazolines and pyrazolidines via [3+2] metal and organocatalyzed transformations reported since the seminal work of Kobayashi et al. and Fu et al. in 2002 and 2003 up to the end of year 2017.
机译:偶氮甲亚胺的不对称[3 + 2]环加成反应是一种有用的合成工具,用于构建具有可变饱和度和最多三个立体异构中心的吡唑衍生物。作为在天然产物中丰富的吡咯烷和咪唑烷的类似物,吡唑啉和吡唑烷衍生物由于在化学和医药工业中的广泛应用而代表了有吸引力的合成靶标。随着对近年来获得的1,3偶极子的金属催化和有机催化[3 + 2]环加成反应的机理的加深了解,在设计和开发可在温和合成条件下有效进行的新方案方面已取得了重大进展。充分受益于出色的官能团耐受性和选择性。在这篇综述中,我们代表了该领域的最新技术,以及自Kobayashi等人的开创性工作以来,通过[3 + 2]金属和有机催化转化合成非外消旋吡唑啉和吡唑烷的详细方法。和Fu等。在2002年和2003年之前,到2017年年底为止。

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