パラジアム触媒によるエナチオセレクティブドミノヘック/分子間C−H結合機能化: (+) -エセルメトールの合成への開発と応用
Wangqing Kong1, Qian Wang1, Jieping Zhu1
1Laboratory of Synthesis and Natural Products, Institute of Chemical Sciences and Engineering, Ecole Polytechnique Fédérale de Lausanne , EPFL-SB-ISIC-LSPN, BCH 5304, 1015 Lausanne, Switzerland.
Journal of the American Chemical Society
|December 19, 2015
まとめ
この研究では,高いエナチオ選択性を持つ3,3-非置換オキシンドルを合成するための新しい方法が導入されています. 開発された非対称カルボパラデーションとアゾール捕獲戦略は,有機合成における広範な適用性を実証し,効率的に四次性ステレオセンターを作成します.
科学分野:
- 有機化学
- 非対称合成
- カタリシス
背景:
- オキシンドールは医薬品化学における重要なヘテロサイクルの基幹である.
- 全炭素四分型ステレオセンターの効率的な建設は,合成の課題であり続けています.
研究 の 目的:
- 3,3-非置換オキシンドールの新しい非対称合成を開発する.
- C−C結合形成による四次性ステレオセンターの作成方法の確立.
- オキシンドールからピロロインドリンへの変換を研究する.
主な方法:
- N-アリルアクリラミドの分子内非対称カルボパラデーション
- アゾールでパラジウム複合体の分子間捕獲
- ピロロインドリンの合成のための還元サイクル.
主要な成果:
- 3,3-非置換オキシンドールに対する良好な収量と優れたエナチオセレクティビティを達成した.
- 2つのC-C結合と 炭素四分子のステレオセンターを 作成しました
- ピロロインドリンへの変換を証明し, (+) -エサーメホールを合成する方法を適用した.
結論:
- 開発された方法論は,エナチオメリックに濃縮された3,3-非置換オキシンドルへの効率的な経路を提供します.
- この戦略は複雑な分子構造の構築を可能にします
- 非対称合成におけるパラジウム触媒の可能性を強調する.
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