アモルフなヘクサアザトリーナフィチレン誘導体における高電荷载体運動性
Bilal R Kaafarani1, Takeshi Kondo, Junsheng Yu
1Center for Organic Photonics and Electronics, School of Chemistry and Biochemistry, Georgia Institute of Technology, Atlanta, Georgia 30332, USA.
Journal of the American Chemical Society
|November 25, 2005
まとめ
ヘクサアザトリナフチレンのトリス (pentafluorobenzyl ester) 誘導体のイソメア混合物は,良好な電荷载体運動性を有する安定した無形膜を形成する. 純粋な2,8,15-同位体である.
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
- 超分子化学とは
背景:
- ヘキザザトリナフィチレン誘導体は,電子的な用途のために研究されています.
- 形態学の制御は,有機半導体における電荷载体移動性を最適化するための鍵です.
研究 の 目的:
- ヘクサアザトリナフチレン (hexaazatrinaphthylene) のトリス (pentafluorobenzyl ester) デリバティブのフィルム形態と電荷载体移動性に対する同位体純度の影響を調査する.
- 異体混合物の性質を純粋な異体と比較する.
主な方法:
- ヘキザザトリナフィチレン誘導体の合成.
- イソメア混合物と純粋な2,8,15-イソメアから薄膜を製造する.
- 顕微鏡技術を用いたフィルム形態の特徴化.
- 電気輸送測定を用いた電荷媒体の移動性の測定.
主要な成果:
- 同位体混合物は安定した無形フィルムを形成し,効果的電荷载体移動性は0.02cm2/Vsであった.
- 純粋な2,8,15同位体は,多様な形状と幅広いキャリアモビリティ (0.0010.07cm2/Vs) を表した.
- 純粋アイソメアの膜特性には,加工条件が非常に重要でした.
結論:
- 同位体組成は,ヘキザザトリナフチレン誘導体の形態学的安定性と電荷輸送特性に大きな影響を与える.
- アイソメア混合物からの無形膜は,再現可能な電子特性への経路を提供します.
- 処理条件は,有機電子機器における純粋同位体の性能を制御するために極めて重要です.
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