复杂β-化亚氨酸的可预测的C-H功能化:一个机械结合的特定位点氧化
Carla Obradors1, Christopher A Reiher2, Cristina Grosanu2
1Chemical Process Research and Development at Johnson & Johnson Innovative Medicine, Janssen Research and Development, A Division of Janssen Pharmaceutica NV, Turnhoutseweg 30, 2340 Beerse, Belgium.
研究人员开发了一种新的C-H功能化方法,使复杂的异环基架中可预测的C-O键形成成为可能. 这一突破为药物发现和合成提供了多功能后期多样化.
科学领域:
- 有机化学 有机化学
- 合成化学 合成化学
- 药用化学 医学化学
背景情况:
- 由于选择性问题,在复杂的支架中直接操纵C-H键具有挑战性.
- 异环在合成药物中至关重要,推动了对多功能合成路径的需求.
- 现有的方法往往产生异构混合物,并且具有有限的范围,特别是在多环系统中.
研究的目的:
- 开发一种简单的C-H功能化方法,用于β-融合的氨酸.
- 在C-O债券形成中实现独家和可预测的区域控制.
- 为了使各种异环基架的晚期多样化.
主要方法:
- 直接的C-H功能化多个β融合的亚.
- 采用与各种功能组相容的轻度反应条件.
- 利用形成的C-O键作为一个分离的合成柄.
主要成果:
- 在C-O债券形成中实现了独家和可预测的区域控制.
- 证明与广泛的图案相兼容,包括对过渡金属敏感的图案.
- 成功地将该方法应用于超过10个不同的异环基架.
- 通过引入的合成处理器,实现了后期的多样化.
结论:
- 报告的方法提供了一种可靠的方法,用于β融合的酸的C-H功能化.
- 为复杂的异环循环的后期多样化提供了一种多功能战略.
- 通过克服有偏见的选择性问题来促进回归合成分析.
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