一个Ru(I) 金属基,它催化了从arylazides中烯与阿佐烯的合
Ayumi Takaoka1, Marc-Etienne Moret, Jonas C Peters
1California Institute of Technology, Division of Chemistry and Chemical Engineering, Pasadena, California 91125, USA.
金属基可催化酸的N-N合,形成阿佐. 反应机制涉及自由基烯,而不是金属胺基物种的双分子合.
科学领域:
- 有机金属化学 有机金属化学
- 催化剂是一种催化剂.
- 合成化学 合成化学
背景情况:
- 酸是阿佐的前体,是重要的有机化合物.
- 了解阿佐烯合成的催化机制对于开发高效的合成路径至关重要.
- 鲁复合物在调解不寻常的合反应方面表现有前途.
研究的目的:
- 通过使用Ru (I) 金属化催化剂,研究化的N-N合.
- 阐明反应机制,包括金属胺介质的作用.
- 探索酸替代剂对反应结果的影响.
主要方法:
- 复合物的合成和表征,包括Ru (I),Ru (II) 和Ru (IV) 种.
- 触媒反应涉及化和催化剂.
- 频谱学研究 (EPR) 探测电子结构和根性质.
- 机制研究,以排除拟议的途径.
主要成果:
- (I) 金属基,[SiP (iPr) (III) ] (N (II)) 有效催化烯酸化物的N-N合,从而产生阿佐.
- 亚烯产量取决于替代物,对电子丰富的酸 (p-methoxy,p-ethoxy) 观察到催化活性,但对电子贫穷的酸 (p-trifluoromethyl) 没有.
- 孤立和表征不寻常的鲁胺和亚胺 adduct 复合体提供了机械的洞察力.
- 有证据表明,金属胺物种的双分子合并不是操作机制.
结论:
- 酸的催化N-N合是通过一种涉及释放自由酸的机制进行的.
- 然后,甲酸中间体经历自我合或与甲酸反应,形成甲酸.
- 金属中心显著影响反应路径,有利于烯释放而不是伊米德合.
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