A Study on Photosensitization Mechanism of Phthalocyanines with LB Films

LB박막을 이용한 프탈로시아닌의 광증감 기구에 관한 연구

  • 김범구 (동국대학교 이과대학 화학과) ;
  • 김영순 (동국대학교 이과대학 화학과)
  • Published : 19990200

Abstract

The phthalocyanine(Pc) film can not be prepared by LB method because it is insoluble in organic solvents. In order to increase its solubility, two kinds of copper phthalocyanine derivatives (CuPc$(COOH)_2$ and CuPc$(COOH)_4$) were synthesized and their monolayers were prepared by LB method. It is found from the surface pressure-area curves that the LB monolayer film of CuPc$(COOH)_2$ have more ordered structure than that of CuPc$(COOH)_4$. In the photocurrent characteristic the value Of CuPc$(COOH)_2$ was superior to that of CuPc $(COOH)_4$. Therefore, it is found that the charge generation efficiency for phthalocyanines have influenced on its ordered structure as the functional groups.

프탈로시아닌의 광증감 기구를 연구하기 위하여 가용성 프탈로시아닌, copper(II) 4,5-dicarboxyphthalocyanine[CuPc$(COOH)_2$]와 copper(II) 4,5,4',5'-tetracarboxyphthalocyanine[CuPc$(COOH)_4$]을 합성하였다. 합성된 프탈로시아닌 유도체의 단분자층을 ITO유리기판 위에 LB방법으로 만들었다. CuPc$(COOH)_2$ 의 LB단분자층이 CuPc$(COOH)_4$의 막보다 더 규칙적인 배열구조를 가진 시료가 만들어짐을 표면압력-면적 곡선으로써 확인하였고 프탈로시아닌 유도체의 LB단분자층의 광전류를 측정하였더니 규칙적인 배열의 CuPc$(COOH)_2$[$i_{max}$=20.84nA]가 CuPc$(COOH)_4$[$i_{max}$=10.50nA]보다 전하발생효율이 거의 두배로 나타나는 결과를 얻었다.

Keywords

References

  1. Molecular Semiconductors Simon, J.;Andre, J.;Rees, C. W.(Ed.);Lehn, J. M.(Ed.)
  2. Current Problems in Electrophotography Wiegl, J.;Mammino, J.;Whittaker, G. L.;Radler, R. W.;Byrne, J. F.;Berg, W. F.(Ed.);Hauffe, K.(Ed.)
  3. Mater Microlithogr. v.22 Alexandru, L.;Hopper, M. A.;Loutfy, R. O.;Sharp, J. H.;Vincett, P. S.;Johnson, G. E.;Law, K. Y.
  4. J. Imaging Technol. v.11 Kakuta, A.;Mori, Y.;Takano, S.;Sawada, M.;Shibuya, I.
  5. The Phtalocyanines Moser, F. H.;Tomas, A. L.
  6. フタロシアニン 田中正夫;駒省二
  7. 電子寫眞學會誌 v.19 橫山正明;三川農
  8. Coordination Chemistry of Macrocyclic Compounds Boucher, L. J.;Melson, G. A.(Ed.)
  9. J. Chem. Phys. v.71 Loutfy, R. O.;Sharp, J. H.
  10. Appl. Phys. Lett. v.48 Tang, C. W.
  11. Synthetic Metals v.71 Tetsuo, T.;Takuya, N.;Yoshimasa, F.;Shogo, S.
  12. J. Appl. Phys. v.65 Temofonte, T. A.;Schoch, K. F.
  13. Chem. Mater. v.5 Rodriguez-Mendez, M. L.;Aroca, R.
  14. Sensors and Actuators B v.2 Zhu, D. G.;Petty, M. C.;Harris, M.
  15. J. Phys. Chem. Solids v.44 Honeybourne, C. L.;Ewen, R. J.
  16. Int. J. Electronics v.78 Nabok, A. V.;Kazantseva, Z. I.;Lavrik, N. Y.;Nesterenko, B. A.
  17. Electrochromism: Fundamentals and Applications Paul, M. S. Monk;Roger, J. Mortimer;David, R. Rosseinsky;Peter, G.(Ed.);Ute, A.(Ed.)
  18. Chem. Mater. v.4 Rodriguez-Mendez, M. L.;Aroca, R.;Desaja, J. A.
  19. Bull. Chem. Soc. Jpn. v.69 Naoki, T.;Tsuyoshi, T.;Shin-ichi, K.
  20. Thin Solid Films v.192 Hua, Y. L.;Jiang, D. P.;Shu, Z. Y.;Petty, M. C.;Roberts, G. G.;Ahmad, M. M.
  21. J. Photochem. Photobiol. A: Chem. v.87 Sunao, Y.;Kotaro, K.;Hiroaki, Y.;Taku, M.
  22. J. Phys. Chem. v.91 Klofta, T. J.;Sims, T. D.;Paukow, J. W.;Danziger, J.;Nebesny, K. W.;Amstrong, N. R.
  23. Chem. Lett. Hiroshi, F.;Yoshika, Y.;Hitoki, T.;Hiroshi, M.
  24. J. Photochem. Photobiol. A: Chem. v.97 Yuji, K.;Tatsuo, A.;Hirochika, S.;Katsumi, T.;Chyongjin, P.
  25. J. Am. Chem. Soc. v.39 Langmuir, I.
  26. J. Am. Chem. Soc. v.57 Blodgett, K. B.
  27. Ultrathin Organic Films Ulman, A.
  28. Thin Solid Films v.99 Baker, S.;Petty, M. C.;Roberts, G. G.;Twigg, M. V.
  29. J. Am. Chem. Soc. v.106 Snow, A. W.;Jarvis, N. L.
  30. Nature v.313 Fryer, J. R.;Hann, R. A.;Eyres, B. L.
  31. Phthalocyanines properties and Applications Snow, A. W.;Barger, W. R.
  32. Philosophical Magazine B v.53 Hua, Y. L.;Roberts, G. G.;Ahmad, M. M.;Petty, M. C.;Hanack, M.;Rein, M.
  33. Langmuir v.9 Jennings, C.;Kovacs, G. J.;Aroca, R.
  34. Thin Solid Films v.99 Brynda, E.;Koropecky, I.;Nespurek, S.
  35. Synthetic Metals v.37 Brynda, E.;Koropecky, I.;Nespurek, S.
  36. Angew. Chem. Int. Ed. Engl. v.25 Ernst, O.;Gerhard, W.
  37. Thin Solid Films v.223 Tuo, L.;Weiging, Z.;Fuxi, G.
  38. Langmuir v.10 Fu, Y.;Jayaraj, K.;Lever, A. B. P.
  39. Thin Solid Films Pasimeni, L.;Meneghetti, M.;Rella, R.;Valli, L.;Granito, C.;Troisi, L.
  40. J. Phys. Chem. v.89 Aroca, R.;Jennings, C.;Kovacs, G. J.;Lontfy, R. O.;Vincett, P. S.
  41. Thin Solid Films v.210 Ogawa, K.;Yonehara, H.;Maekawa, E.
  42. J. Phys. Chem. v.95 Fu, Y.;Jayaraj, K.;Lever, A. B. P.
  43. J. Am. Chem. Soc. v.116 Kobayashi, N.;Lam, H.;Nevin, W. A.;Janda, P.;Leznoff, C. C.;Koyama, T.;Monden, A.;Shirai, H.
  44. J. Kor. Chem. Soc. v.37 Heur, S. O.;Kim, Y. S.