リビングリング開封アルキンメタテシスポリメリゼーションによるエンド機能化されたグラフェンナノリボンの一式合成
Stephen von Kugelgen1, Ilya Piskun1, James H Griffin1
1Department of Chemistry , University of California Berkeley , Berkeley , California 94720 , United States.
Journal of the American Chemical Society
|July 3, 2019
まとめ
研究者は精密に制御されたグラフェンナノリボン (GNR) の生きた合成を開発しました. この方法は,事前に決定された長さとエンドグループを可能にし,高度な電子デバイスのアプリケーションを可能にします.
科学分野:
- 材料科学
- 有機化学
- ナノテクノロジー
背景:
- 原子精度の高いグラフェンナノリボン (GNR) は 次世代の電子機器に不可欠です
- 現在の合成方法では,GNRの長さ,シーケンス,エンドグループに対する制御が欠けている.
研究 の 目的:
- チェブロン型GNR (cGNR) を制御された寸法で生成するための合成方法を開発する.
- GNRを複雑な電子アーキテクチャに統合できるようにする.
主な方法:
- ポリアリレンエチニレン) 前駆体を使った生鎖成長合成.
- マクロサイクリックモノメールのリング開きアルキンメタテシスポリメリゼーション (ROAMP).
- 横の脊髄拡張のための無効反応.
主要な成果:
- 既定の長さとエンドグループを持つcGNRの合成に成功した.
- 生体ポリマーテンプレートによる構造制御の実証
- 緊張したトリプルボンドはポリメリゼーションと無効化サイトとして機能した.
結論:
- この生きたテンプレート合成は,GNRに対する正確な構造制御を提供します.
- シーケンス定義のヘテロジュンクションと単一GNRトランジスタへの道を開く.
- 階層的なアセンブリと高度な電子デバイスの統合を可能にします.
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