Spectroscopy and photochemistry of single organic nanocrystals investigated by using a far-field optical microscope coupled with an AFM system

Tsuyoshi Asahi, Victor V. Volkov, Hideki Matsune, Hidetsugu Kawai, Hiroshi Masuhara

研究成果: Chapter in Book/Report/Conference proceedingConference contribution

1 引用 (Scopus)

抜粋

We have developed a dark-field optical microspectrscopic system coupled with AFM measurement, and applied it to 1, 6-di(N-carbazolyl)-2-4-hexadiyne (DCHD) nanocrystal systems. We revealed clearly the size and shape dependent peak of the polymer-backbone electronic transition of individual poly-DCHD nanocrystals. It was found that the peak energy of the resonant Rayleigh scattering spectra shifted to a lower energy for nanocrystals having larger cross-section against its long axis. In situ observation of photopolymerization of individual monomer DCHD nanocrystals is also descried. It has been successfully demonstrated that the morphological of fibrous nanocrystal changes upon polymerization. Our single particle results demonstrate that far-field microscopy coupled with AFM is a reliable experimental approach for investigating optical properties and photochemistry of organic nanoparticles.

元の言語英語
ホスト出版物のタイトルElectron Transfer in Nanomaterials - Proceedings of the International Symposium
ページ150-161
ページ数12
出版物ステータス出版済み - 10 16 2006
イベント205th Electrochemical Society Meeting - San Antonio, TX, 米国
継続期間: 5 9 20045 14 2004

出版物シリーズ

名前Proceedings - Electrochemical Society
PV 2004-22

その他

その他205th Electrochemical Society Meeting
米国
San Antonio, TX
期間5/9/045/14/04

All Science Journal Classification (ASJC) codes

  • Engineering(all)

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  • これを引用

    Asahi, T., Volkov, V. V., Matsune, H., Kawai, H., & Masuhara, H. (2006). Spectroscopy and photochemistry of single organic nanocrystals investigated by using a far-field optical microscope coupled with an AFM system. : Electron Transfer in Nanomaterials - Proceedings of the International Symposium (pp. 150-161). (Proceedings - Electrochemical Society; 巻数 PV 2004-22).