在催化C-H/C-O双联合中,一个烯 (Arylnickel) (II) 复合物的分离,结构和反应性
Kei Muto1, Junichiro Yamaguchi, Aiwen Lei
1Institute of Transformative Bio-Molecules (WPI-ITbM) and Graduate School of Science and §JST, ERATO, Itami Molecular Nanocarbon Project, Nagoya University , Nagoya 464-8602, Japan.
Journal of the American Chemical Society
|October 25, 2013
概括
这项研究详细介绍了1,3-azoles和aryl pivalates的催化C-H/C-O biaryl合. 机理学研究显示,C-H化是催化循环中速度限制的步骤.
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.
- 合成有机化学 合成有机化学
背景情况:
- 双化合物是药品和材料中的关键结构图案.
- 有效的催化方法用于构建二链路是非常受欢迎的.
- 催化剂为交叉合反应提供了贵金属催化剂的经济有效的替代方案.
研究的目的:
- 为了阐明催化C-H/C-O二结合的机制,在1,3-azoles和aryl pivalates之间.
- 确定关键的中间体,并了解连接体在催化循环中的作用.
- 为了确定反应的速度限制步骤.
主要方法:
- 机械研究包括动力实验和动力同位素效应 (KIE) 调查.
- 拟议的 (II) 中间体的合成,分离和结构特征.
- 使用Ni ((cod) 2和dcype连接体的催化反应.
主要成果:
- 催化循环涉及C-O氧化添加,C-H化和还原性消除.
- 第一个烯二酸中间体已经成功合成,分离和结构特征.
- 动力学研究和KIE数据表明,C-H化是限制营业额的步骤.
结论:
- 这项研究提供了对Ni-催化C-H/C-O双结合的全面机制理解.
- 这种连接体在调节C-H/C-O合反应的效率方面发挥着重要作用.
- 这项工作建立了一个强大的催化系统,用于合成有价值的二化合物.
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