空気に安定したトリアリアライミン共ポリマーの電荷キャリアの移動性を体系的に改善する
Weimin Zhang1, Jeremy Smith, Rick Hamilton
1Imperial College, London, SW7 2AZ. weimin.zhang@imperial.ac.uk
Journal of the American Chemical Society
|July 17, 2009
まとめ
研究者らは,フィールドエフェクトトランジスタ用の空気安定型,無形半導体ポリマーを開発した. これらの材料は,惰性大気を必要とせず,良好な電荷キャリアの移動性を達成し,回路アプリケーションを簡素化します.
科学分野:
- オーガニック・エレクトロニクス
- マテリアルサイエンス 材料科学
- 半導体物理学の物理
背景:
- 有機半導体ポリマーは,低複雑性の回路に適しています.
- 高性能には,しばしば惰性大気または特定の処理が必要です.
- 空気の安定性は,実用的なアプリケーションの重要な課題です.
研究 の 目的:
- 空気に安定した無形半導体ポリマーを開発する.
- 環境条件下での高電荷キャリアの移動性を達成するために.
- オーガニック・フィールド・エフェクト・トランジスタの製造と操作を簡素化する.
主な方法:
- 新型無形半導体ポリマーの合成.
- フィールド効果トランジスタ装置の製造.
- 時間の経過による環境条件下における電気的特徴.
主要な成果:
- 0.04cm^2/{Vs}までの電荷キャリアの移動性を達成した.
- ポリマーは完全な空気安定性を示しました.
- 性能は,環境条件で3ヶ月以上安定したままでした.
結論:
- 空気に安定する有機半導体を作る戦略が成功裏に実証されました.
- 開発されたポリマーは,実用的な有機電子機器の実行可能な代替案を提供します.
- 惰性大気の要件を排除することで,デバイスの製造と使用が簡素化されます.
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