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キラルと非キラル空間群間の結晶から結晶への相変化によるメカノ反応性発光
Mingoo Jin1, Tomohiro Seki1, Hajime Ito1
1Division of Applied Chemistry & Frontier Chemistry Center, Faculty of Engineering, Hokkaido University , Sapporo, Hokkaido 060-8628, Japan.
Journal of the American Chemical Society
|May 24, 2017
まとめ
新しいメカノ反応性発光材料は,結晶から結晶への相変化を示しています. 機械的刺激により,結晶構造と放射特性が変化し,新しい材料の応用が可能になります.
科学分野:
- 材料科学
- クリスタルグラフィー
- フォト物理学
背景:
- 機械反応性発光材料 (MRL) は,ダイナミックな光学特性を有する.
- 固体相変遷を制御することは 物質の振る舞いを調整する鍵です
研究 の 目的:
- 結晶から結晶への相転換を利用した新しいMRL材料を開発する.
- 構造変化と発光の関係を調べる
主な方法:
- 黄金の複合体とビフェニル分子の合成
- 機械的刺激 (刺さり,磨き) による相変化の誘導
- 結晶構造と放射特性の特徴
主要な成果:
- アキラール・ゴールド・コンプレックスはオレンジ色を放出する無形相/オイルを形成した.
- 機械的刺激により,変化した放射を持つキラルまたはセンターシンメトリックな段階に結晶化が誘発される.
- キラル結晶を研磨すると,放射の変化で固体状態からアキラル結晶へと移行した.
結論:
- 結晶から結晶への可逆的な相移行に基づく新しいMRL材料が実証されました.
- 機械的な力,結晶の対称性,そして発光の間のリンクを確立しました.
- 調節可能な光学出力を持つスマート素材の設計の可能性を強調した.
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