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Size-dependent Fluorescence Spectra of Individual Perylene Nanocrystals Studied by Far-Field Fluorescence Microspectroscopy Coupled with Atomic Force Microscope Observation

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Single particle fluorescence spectroscopy coupled with AFM observation is reported for perylene nanocrystals. Fluorescence spectral measurement for individual nanocrystals with the size from 100 nm to 500 nm and fluorescence anisotropy analysis demonstrate that the size dependence in fluorescence is in the intrinsic nature of nanometer-sized crystal of perylene. Single nanoparticle fluorescence shows the enhanced monomer (M-) emission compared to the bulk crystal and a blue-shift of excimer (E-) emission peak wave length by decreasing the nanoparticle size. It is found for the first time that the size dependence is correlated well to the surface-to-volume ratio of nanocrystal. The size-dependent fluorescence is not attributed to a quantum confinement effect of exciton, but to a change in the elastic properties of nanocrystal with size, which in turn affects excimer formation. We discuss the decrease in elastic constant of crystal-line lattice due to large surface-to-volume ratio, and propose an empirical formula on the size-dependence of E-emission peak in the framework of the strong coupling model of exciton-phonon interaction.
Rocznik
Strony
687--699
Opis fizyczny
Bibliogr. 53 poz., rys.
Twórcy
autor
autor
autor
autor
autor
autor
  • Department of Applied Physics, Osaka University, Suita, Osaka 565-0871, Japan Tel: +81 6-6879-7838, Fax: +81 6-6879-7840, asahi@ap.eng.osaka-u.ac.jp
Bibliografia
  • 1. Katagi H., Kasai H., Okada S., Oikawa H., Komatsu K., Matsuda H., Liu Z. and Nakanishi H., Jpn., Appl Phys., 35, L1364 (1996).
  • 2. Kasai H., Yoshikawa Y, Seko T., Oikawa H., Matsuda H., Watanabe A., Ito O., Toyotama H. Nakanishi H., Mol. Cryst. Liq. Cryst., 294,173 (1997).
  • 3. Kasai H., Oikawa H., Okada S. and Nakanishi H., Bull. Chem. Soc. Jpn., 71,2597 (1998).
  • 4. Katagi H., Oikawa H., Okada S., Kasai H., Watanabe A., Ito O., Nozue Y. and Nakanishi H., Mol Cryst. Lig. Cryst., 314,285 (1998).
  • 5. Fujita S., Kasai H., Okada S., Oikawa H., Fukuda T., Matsuda H., Tripathy S.K. and Nakanishi H., Jpn. J. Appl. Phys., 38, 659 (1999).
  • 6. Fortner J.D., Lyon D.Y, Sayes C.M., Boyd A.M., Falkner J.C., Hotze E.M., Alemany L.B., Tao Y.J. Guo W, Ausman K.D., Colvin V.L. and Hughes J.B., Environ. Sci. Technol., 39,4307 (2005).
  • 7. Xiao D., Xi L., YangW., Fu H., Shuai Z., Fang Y. and Yao J., J. Am. Chem. Soc., 125, 6740 (2003).
  • 8. Fu H.-B. and Yao J.-N., J. Am. Chem. Soc., 123, 1434 (2001).
  • 9. Oh S.W. and Kang Y.S., Coli. Surf. A, 257-258,415 (2005).
  • 10. Xiao D., Yang W., Yao J., Xi L., Yang X. and Shuai Z., J. Am. Chem. Soc., 126, 15439 (2004).
  • 11. An B.-K., Kwon S.-K., Jung S.-D. and Park S.Y, J. Am. Chem. Soc., 124, 14410 (2002).
  • 12. KurokawaN., YoshikawaH., HirotaN., Hyodo K. and MasuharaH., Chem. Phys. Chem., 5,1609 (2004^
  • 13. Nitschke C., Tlaherty S.M., Kroll M., Doyle J.J. and Blau W.J., Chem. Phys. Lett., 383,555 (2004).
  • 14. Baba K., Kasai H., Okada S., Oikawa H. and Nakanishi H., Jpn. J. Appl. Phys., 39, 1256 (2000).
  • 15. Al-Kaysi R.O., Mttller A.M., Ahn T.-S., Lee S. and Bardeen C.J., Langmuir, 21, 7990 (2005).
  • 16. Sanz N., Baldeck P.L. and Ibanez A., Synth. Met., 115, 229 (2000).
  • 17. Spagnoli S., Błock D., Botzung-Appert E., Colombier L, Baldeck P.L., Ibanez A. and Corval A., J. Phys. Chem. B, 109, 8587 (2005).
  • 18. Brasselet S., Le Flock V., Treussart F., Roch J.-F., Zyss J., Botzung-Appert E. and Ibanez A., Phys. Rev. Lett., 92,207401 (2004).
  • 19. Tamaki Y, Asahi T. and Masuhara H., Appl. Surf Sci., 168, 85 (2000).
  • 20. Tamaki Y, Asahi T. and Masuhara H., J. Phys. Chem. A, 106, 2135 (2002).
  • 21. Sugiyama T., Asahi T. and Masuhara H., Chem. Lett., 33, 724 (2004).
  • 22. Sugiyama T., Asahi T., Takeuchi H. and Masuhara H., Jpn. J. Appl. Phys., 45, 384 (2006).
  • 23. Jeon H.-G., Ryo S., Sugiyama T., Oh Y, Masuhara H. and Asahi T., Chem. Lett., 36, 1160 (2007).
  • 24. Jeon H.-G., Sugiyama T., Masuhara H. and Asahi T., J. Phys. Chem. C, 111, 14658 (2007).
  • 25. Kita S., Masuo S., Machida S. and Itaya A., Jpn. J. Appl. Phys., 45, 6501 (2006).
  • 26. Tian Z., He C., Liu C., Yang W, Yao J., Nie Y, Gong Q. and Liu Y, Mater. Chem. Phys., 94,444 (2005).
  • 27. Li S., He L., Xiong F., Li Y. and Yang G., J. Phys. Chem. B, 108, 10887 (2004).
  • 28. Seko T., Ogura K., Kawakami Y, Sugino H., Toyotama H. and Tanaka J., Chem. Phys. Lett., 291, (1998).
  • 29. Onodera T., Kasai H., Okada S., Oikawa H., Mizuno K., Fujitsuka M., Ito O. and Nakanishi H., Materials, 21, 595 (2002).
  • 30. Oikawa H., Mitsui T., Onodera T., Kasai H., Nakanishi H. and Sekiguchi T., Jpn. J. Appl. Phys., 42, L111 (2003).
  • 31. Lagoudakis P.G., de Souza M.M., Schindler F., Lupton J.M., Feldmann J., Wenus J. and Lidzey D.G. Phys. Rev. Lett., 93, 257401 (2004).
  • 32. Kolodny L. A., Willard D.M., Carillo L.L., Nelson M. W. and Orden A.V.,Anal. Chem., 73,1959 (2001).
  • 33. Volkov V.V., Asahi T., Masuhara H., Masuhara A., Kasai H., Oikawa H. and Nakanishi H., J. Phys. Chem. B, 108, 7674 (2004).
  • 34. Matsune H., Asahi T., Masuhara H., Kasai H. and Nakanishi H., MRS Proceedings, 846, DD10.8 (2004).
  • 35. Gesquiere A.J., Uwada T., Asahi T., Masuhara H. and Barbara P.F., Nano Letters, 5, 1321 (2005).
  • 36. Lee B.-K., Koh W-K., Chae W.-S. and Kim Y.-R., Chem. Comm., 138 (2003).
  • 37. Nishimura H., Yamaoka T., Mizuno K., Iemura M. and Matsuni A., J. Phys. Soc. Jpn., 53,3999 (1984).
  • 38. Dunn R.C., Chem. Rev., 99, 2891 (1999).
  • 39. Simonesen A.C. and Rubahn H., Nano Letters, 2, 1879 (2002).
  • 40. Hards A., Zhou C, Seitz M., Bruchle C. and Zumbusch A.. Chem. Phys. Chem., 6, 534 (2005).
  • 41. Nie S. and Emory S.R., Science, 275, 1102 (1997).
  • 42' Wong S.S. and Brus L., J. Phys. Chem. B, 105, 599 (2001).
  • 43. Shen Y, Lin T.-C., Dai J., Markowicz P. and Prasad P.N., J. Phys. Chem. B, 107, 13551 (2003)
  • 44. Barbara P.F., Adams D.M. and O'Connor D.B., Ann. Rev. Mater. Sci., 29, 433 (1999)
  • 45. Lakowicz J.R., Principles of Fluorescence Spectroscopy, 2nd Ed; Kluwer Academic/Premium Publishers: New York, 1999.  
  • 46. Nishimura H., Yamaoka T., Mizuno K., lemura M. and Matsuni A., J. Phys. Soc. Jpn. 53 3999 (1984).
  • 47. Cohen M.D., Habrerkorn R., Huler E., Ludmer Z., Michel-Beyerle M.E., Rabinov'ich' D.   Sharron R.,Warshel A. and Yakhot V., Chem. Phys., 27, 211 (1978).
  • 48. Walker B., Port H. and Wolf H.C., Chem. Phys., 92, 177 (1985).
  • 49. Toyozawa Y, Pure Appl. Chem., 69, 3 (1997).
  • 50. Takagi M., J. Phys. Soc. Jpn., 9, 359 (1954).
  • 51. Buffat P. and Borel L.P., Phys. Rev. A, 13, 2287 (1976).
  • 52. Jackson C.L. and Mckenna G.B., Chem. Mater., 8, 2128 (1996).
  • 53. Jackson C.L. and Mckenna G.B., J. Chem. Phys., 93, 9002 (1997).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUJ6-0024-0087
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