ヘリカルグラファイト
スポンサーリンク
概要
- 論文の詳細を見る
One-handed helical graphite films with a structure controlled by that of the original iodine-doped helical polyacetylene (H-PA) films were prepared using the recently developed morphology-retaining carbonization method. The fibrillar structure of the H-PA film remains unchanged even after carbonization at 800 °C. The weight loss of the film due to carbonization was very small; only 10-29% of the weight of the film before doping was lost. Furthermore, the graphite film prepared by subsequent heating at 2600 °C retained the same structure as that of the precursor films. The screw direction, degree of twist, and vertical or horizontal alignment of the helical graphite film were well controlled by changing the sense and pitch of the helix, and the orientation of the chiral nematic liquid crystal (N*-LC) used as an asymmetric LC reaction field. The important potential of these graphite films is exemplified in their electrical properties. The horizontally aligned helical graphite film exhibits an increase in electrical conductivity compared to the nonaligned one. The aligned helical graphite film also shows an electrical anisotropy in which conductivity parallel to the helical axis of the fibril bundle is higher than that perpendicular to the axis.
著者
関連論文
- 不斉液晶反応場での重合とその展開
- 不斉液晶反応場でのヘリカル共役ポリマーの合成とらせん構造形成メカニズムの解明
- 私は忘れない
- 共役系高分子の次世代光材料への期待--共重合型ポリ(エチレンジオキシチオフェン)誘導体の合成と光学的性質 (特集 未来社会を支える化学技術)
- 導電性高分子(1977年 : 白川英樹)
- 液晶場での共役高分子超階層構造の構築
- キラル液晶場を用いた共役系高分子の合成と機能化
- キラル液晶場での共役ポリマーの合成と超階層構造制御および機能化
- 液晶を用いた不斉反応場の開発と共役系高分子の階層性らせん構造の制御
- PB14 液晶基を有する新規ビナフチル誘導体の合成と性質(トピカルセッション-液晶物性計測の最前線-, 2005年日本液晶学会討論会)
- コポリマー型キラルPEDOT誘導体の合成と、電気化学的酸化・還元によるエレクトロクロミズムとキラリティーの制御
- ヘリカルグラファイト