通过封装有机金属物来激活Iodoarenes的超分子宿主选择性激活
Trandon A Bender1, Mariko Morimoto1, Robert G Bergman1
1Chemical Sciences Division, Lawrence Berkeley National Laboratory, and Department of Chemistry , University of California , Berkeley , California 94720 , United States.
Journal of the American Chemical Society
|January 23, 2019
概括
超分子宿主通过稳定过渡状态和缩基质,使独特的化学反应成为可能. 这项研究表明,主体驱动的氧化添加烯化物,防止分解和指导反应途径.
科学领域:
- 超分子化学 超分子化学
- 有机金属化学 有机金属化学
- 催化剂是一种催化剂.
背景情况:
- 超分子宿主为选择性宿主-客人相互作用创造受控的环境.
- 虽然宿主可以增强反应能力,但通过改变反应条件,有时可以达到类似的结果.
- 挑战在于证明主体特异性反应性与背景过程不同.
研究的目的:
- 研究超分子宿主在促进特定有机金属反应中的作用.
- 为了证明由超分子宿主进行封装可以导致独特的反应途径.
- 探索宿主辅助氧化添加反应的机制.
主要方法:
- 使用的铜 (I) 和 (II) 有机金属复合物.
- 采用超分子宿主来封装反应性中间体和基质.
- 执行了化的氧化添加反应.
- 系统选反应条件,以区分宿主辅助和背景反应.
主要成果:
- 对Cu (I) 和Pd (II) 中心观察到主体辅助的烯化物氧化添加.
- 确定了静电稳定和增加局部基质度作为关键宿主贡献.
- 证明了不同的反应条件导致了分解,而不是所需的反应.
- 证实封装将反应引导到一个特定的,宿主控制的轨迹.
结论:
- 超分子宿主可以将化学反应引导到在标准条件下无法进入的独特路径上.
- 封装提供了一种强大的策略来控制反应性,并防止不必要的副作用,如分解.
- 这项工作突出了超分子化学在设计选择性和高效的催化过程中的潜力.
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