エナチオセレクティブ・トランスファー・アミノアリレーション:光学的に活性なホモアリリック・プライマリアミンの合成
Masaharu Sugiura1, Chieko Mori, Shu Kobayashi
1Graduate School of Pharmaceutical Sciences, The University of Tokyo, Hongo, Bunkyo-ku, Tokyo 113-0033, Japan.
Journal of the American Chemical Society
|August 24, 2006
まとめ
この研究は,カンフォルキノン由来アミンおよびアルデヒドを用いてキラルホモアリリックプライマリアミンを生成するための新しい方法を示しています. 非対称な2-アゾニア-コペ再配列は,幅広い機能群の互換性を持つエナチオセレクティブ合成への実用的な経路を提供します.
科学分野:
- 有機化学 オーガニック・ケミストリー
- アシンメトリック・シンセシス
- カタリシス カタリシス カタリシス
背景:
- チラルアミンは,医薬品や微細化学薬品の重要な構成要素です.
- キラルアミンを合成するための効率的な非対称的な方法の開発は,有機化学における重要な課題です.
研究 の 目的:
- 光学的に活性なホモアリル原性アミンの新しい非対称合成を開発する.
- カンフォルキノン由来キラルホモアリルアミンの非対称変換における有用性を調査する.
主な方法:
- カンフォルキノン系キラルホモアリルアミンと様々なアルデヒドの間のイミン形成.
- 形成されたイミネスの非対称な2-アゾニア-コップの再配置.
- 生成されたキラルアミンの浄化と特徴付け.
主要な成果:
- 光学的に活性なホモアリル原発アミンの合成が成功しました.
- 変換において実用的なレベルのエナチオ選択性を達成した.
- 高い機能群耐性を実証し,多様な基板の適用範囲を可能にします.
結論:
- 開発された方法は,価値あるキラルホモアリックプライマリアミンへの効率的かつエナチオセレクティブな経路を提供します.
- この変換は,薬剤の発見と開発における潜在的な応用を持つキラルアミンの構成要素にアクセスするための実用的なアプローチを提供します.
関連する概念動画
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Azide ions act as good nucleophiles and react with unhindered alkyl halides to form alkyl azides. Alkyl azides do not participate in further nucleophilic substitution reactions, thereby eliminating the chances of polyalkylated products. Alkyl azides are reduced by hydride-based reducing agents, like lithium aluminum...
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Each alkylation step makes the nitrogen center more nucleophilic, which triggers successive alkylations until a quaternary ammonium salt is formed. Considering...
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Strong bases like NaOH or KOH deprotonate the phthalimide to form the corresponding anion, which acts as a nucleophile. Further, the anion attacks an...
Strong bases like NaOH or KOH deprotonate the phthalimide to form the corresponding anion, which acts as a nucleophile. Further, the anion attacks an...
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Next, the second equivalent of amine serves as a Brønsted base and deprotonates the quaternary amide...
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Aminolysis is a nucleophilic acyl substitution reaction, where ammonia or amines act as nucleophiles to give the substitution product. Acid halides react with ammonia, primary amines, and secondary amines to yield primary, secondary, and tertiary amides, respectively.
In the first step of the aminolysis mechanism, the amine attacks the carbonyl carbon of the acyl chloride to form a tetrahedral intermediate. In the second step, the carbonyl group is re-formed with the elimination of a chloride...
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