アニオン性窒素リガンドの銅複合体は,アリルハリドのアミダ化とイミダ化に用いられる
Jesse W Tye1, Zhiqiang Weng, Adam M Johns
1Departments of Chemistry, University of Illinois, Urbana, Illinois 61801, USA.
Journal of the American Chemical Society
|July 4, 2008
まとめ
銅 (((I) イミド酸およびアミド酸複合体は,銅を触媒とするC-N結合反応における重要な中間物質である. これらの複合体は,アリルハリドアミダ化を促進し,メカニズム研究により,直接的な炭素-ハロゲン結合分裂経路が支持されています.
科学分野:
- 有機金属化学 有機金属化学
- カタリシス カタリシス カタリシス
- 合成化学 合成化学とは
背景:
- アリルハリドの銅触媒化アミデーションは,有機合成における重要な変換である.
- これらの反応における銅の中間物質の正確な性質は,依然として調査の対象となっている.
- ケラートするN,N-ドナーリガンドは,銅複合体を安定させることが知られている.
研究 の 目的:
- 銅を合成し,特徴づけること (I) イミド酸およびアミド酸複合体.
- 銅触媒C-N結合反応における中介物質としてのこれらの複合体の役割を調査する.
- アリルハリドの銅触媒化アミダ化のメカニズムを解明する.
主な方法:
- X線微分法を用いた銅 (((I) 複合体の合成と特徴付け.
- 導電性測定とNMRスペクトロスコピーを含む溶液相研究.
- 様々なアリルハリド (ヨドアレン,ブロモアレン,クロロアレン) とのステイキオメトリックおよび触媒反応.
主要な成果:
- 銅 (((I) イミダートとアミダート複合体が合成され,リガンドと溶媒によって中性またはイオン形態に存在しました.
- これらの複合体は,ヨドアレンとブロモアレンとのC-N結合を効果的に触媒化したが,クロロアレンとの反応性は低下した.
- 特定の基板との反応や計算分析を含むメカニズム研究は,根性またはアニオン性銅経路に反対する.
結論:
- 単離された銅 (I) イミド酸およびアミド酸複合体は,銅で触媒化されたアリルハリドアミド化における中間物質である.
- 反応のメカニズムは,銅の協調球内の炭素-ハロゲン結合の直接的な割れ目を伴う可能性が高い.
- この発見は,銅媒介C-N結合形成の触媒サイクルに関する重要な洞察を提供します.
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