アルキルハリドの電気化学ボリレーション:アルキルボロンエステルへの迅速かつスケーラブルなアクセス
Bingbing Wang, Pan Peng, Wan Ma
1Ministry of Education Key Laboratory for the Synthesis and Application of Organic Functional Molecules, Hubei University, Wuhan 430062, P. R. China.
Journal of the American Chemical Society
|August 10, 2021
まとめ
新しい電還元法により,アルキルハライドをボロンエステルに迅速かつスケーラブルで金属なしでボリル化することができる. この室温プロセスは 複雑な分子でも広く適用できます
科学分野:
- 有機化学
- 電気化学
- 合成方法論
背景:
- アルキルハリドのボリレーションは,オルガノボロン化合物の合成に不可欠である.
- 既存の方法はしばしば移行金属や厳しい条件を必要とします.
研究 の 目的:
- アルキルハリドの過渡金属のない電還元型ボリレーションを開発する.
- 多様なボロンエステルへのアクセスのためのスケーラブルで実用的な方法を提供する.
主な方法:
- アルキルハリドの電気化学的還元 (ヨド化物,ブロミド,塩化物)
- ビスコラトディボロン (B2cat2) を反応剤と媒介剤の両方として使用する.
- 室温の反応条件
主要な成果:
- 主要な,二次的,三次的アルキルハライドの迅速かつスケーラブルなボリレーションを達成した.
- 70以上の例で,幅広い機能群の許容性を示した.
- 自然製品や薬物の誘導体の後期ボリル化に成功している.
- 低電位電還元を可能にするB2cat2の二重の役割が明らかになった.
結論:
- 開発された電還元プロトコルは,ボロンエステルへの効率的で持続可能で汎用的な経路を提供します.
- この方法は,従来のボリレーション技術の限界を克服します.
- 医学化学と材料科学の応用には大きな可能性があります.
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