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二酸化炭素とエチレンの鉄媒介結合:マクロサイクル金属ラクトンにより,様々な炭酸塩へのアクセスが可能
Stephan M Rummelt1, Hongyu Zhong1, Ilia Korobkov2
1Department of Chemistry , Princeton University , Princeton , New Jersey 08544 , United States.
Journal of the American Chemical Society
|September 4, 2018
まとめ
鉄複合体は二酸化炭素とエチレンと反応し,炭酸塩酸化合物を形成する. メタラクトン中間物質は,エチレン挿入を通じて飽和および不飽和の鉄炭酸塩を生成する鍵です.
科学分野:
- 有機金属化学
- 協調化学
- キャタリシス
背景:
- 大量ダイミンリガンド (PDI) を含む鉄複合体は,多用途の触媒である.
- 鉄複合体の窒素結合体は,他の基板によって容易に置き換えられる.
研究 の 目的:
- 二酸化炭素とエチレンとの鉄窒素複合体の反応性を調査する.
- 鉄炭酸塩の産物の形成のメカニズムを解明する.
主な方法:
- (iPrPDI) Fe ((N2) 2) がCO2とエチレンと反応する.
- 鉄炭酸塩製品の構造的特徴は,X線結晶学を使用しています.
- 反応経路を調査するデュテリウムラベル研究
主要な成果:
- 飽和と不飽和の鉄炭酸塩酸塩の同類系を形成する.
- 五つ組のメタラクトン中間物質の識別
- メタラクトンにエチレンを挿入すると,マクロサイクル製品が生じる.
結論:
- 反応はメタラクトン中間体を経て,エチレン挿入が続く.
- 配分は反応剤の比率によって制御される.
- 鉄複合体はC−O結合の分裂とC−C結合の形成を促進する.
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