Ultrathin films and supramolecular architecture of phthalocyanine derivatives フタロシアニン超薄膜と超分子構造に関する研究

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著者

    • 藤木, 道也 フジキ, ミチヤ

書誌事項

タイトル

Ultrathin films and supramolecular architecture of phthalocyanine derivatives

タイトル別名

フタロシアニン超薄膜と超分子構造に関する研究

著者名

藤木, 道也

著者別名

フジキ, ミチヤ

学位授与大学

九州大学

取得学位

博士 (工学)

学位授与番号

乙第5388号

学位授与年月日

1993-03-19

注記・抄録

博士論文

目次

  1. CONTENTS / p1 (0003.jp2)
  2. CHAPTER1:OVERVIEWS / p1 (0005.jp2)
  3. §1-1. Material Designs of Functional Molecules and Thin Film Preparation Techniques / p1 (0005.jp2)
  4. §1-2. Historical View of Phthalocyanines and Langmuir-Blodgett Films / p5 (0007.jp2)
  5. §1-3. Purpose and Contents of the Present Thesis / p10 (0010.jp2)
  6. §1-4. References / p12 (0011.jp2)
  7. CHAPTER2:SELF-ASSEMBLING PHENOMENA OF NICKEL PHTHALOCYANINES SUBSTITUTED WITH ALKYLAMIDES / p19 (0014.jp2)
  8. §2-1. Introduction / p19 (0014.jp2)
  9. §2-2. Chemical Structure of Phthalocyanines with Alkylamide Substituents / p20 (0015.jp2)
  10. §2-3. Electronic Absorption Spectra of the Phthalocyanine Assemblies / p20 (0015.jp2)
  11. §2-4. Calculation of Q-band Spectral Shift Using Molecular Exciton Theory / p24 (0017.jp2)
  12. §2-5. Evaluation of Q-band Spectral Shift Using Modified Molecular Exction Theory / p26 (0018.jp2)
  13. §2-6. Further Evidence of One-Dimensional Self-Asscmbling Feature / p28 (0019.jp2)
  14. §2-7. Preparation of Phthalocyanines with Alkylamide Substituents / p29 (0019.jp2)
  15. §2-8. Conclusion / p31 (0020.jp2)
  16. §2-9. Reference / p32 (0021.jp2)
  17. CHAPTER3: IN-PLANE DICHROISMS OF PHTHALOCYANINE LANGMUIR-BLODGETT FILMS / p35 (0022.jp2)
  18. §3-1. Introduction / p35 (0022.jp2)
  19. §3-2. Evaluation of the Phthalocyanine Assemblage in Langmuir-Blodgett Film / p36 (0023.jp2)
  20. §3-3. Force-Area Isotherms of the Phthalocyanine Assemblies / p37 (0023.jp2)
  21. §3-4. Dichroism of the Phthalocyanine Langmuir-Blodgett Films by Polarized UV-Visible Absorption Spectroscopy / p39 (0024.jp2)
  22. §3-5. Dichroisms of the Phthalocyanine Langmuir-Blodgett Films by Polarized IR Absorption Spectroscopy / p43 (0026.jp2)
  23. §3-6. Effect of Deposition Conditions on the Phthalocyanine Assemblies / p45 (0027.jp2)
  24. §3-7. Orientation Mechanism of the Phthalocyanine Assemblies / p45 (0027.jp2)
  25. §3-8. Preparation of Langmuir-Blodgett Films / p46 (0028.jp2)
  26. §3-9. Conclusion / p47 (0028.jp2)
  27. §3-10. References / p47 (0028.jp2)
  28. CHAPTER4:DIRECT PATTERNING AND ELECTRICAL PROPERTIES OF ALKYLAMIDE SUBSTITUTED PHTHALOCYANINE THIN FILEMS / p51 (0030.jp2)
  29. §4-1. Introduction / p51 (0030.jp2)
  30. §4-2. Electrical Conductivity / p52 (0031.jp2)
  31. §4-3. Patterning Properties of Phthalocyanine Thin Films / p53 (0031.jp2)
  32. §4-4. Cross-Linking Reaction Mechanism / p55 (0032.jp2)
  33. §4-5. Dry Etching Durability / p58 (0034.jp2)
  34. §4-6. Fine Patterns Using Electron Beam Lithography / p59 (0034.jp2)
  35. §4-7. Preparation of the Phthalocyanine Thin Films / p59 (0034.jp2)
  36. §4-8. Conclusion / p60 (0035.jp2)
  37. §4-9. References / p60 (0035.jp2)
  38. CHAPTER5:FACILE SYNTHESES OF SOLOBLE RHTHALO-CYANINES WITH SHORT ALKYL SUBSTITUENTS / p63 (0036.jp2)
  39. §5-1. Introduction / p63 (0036.jp2)
  40. §5-2. Synthetic Schemes / p64 (0037.jp2)
  41. §5-3. Bromination of Alkylbenzene Derivatives / p66 (0038.jp2)
  42. §5-4. Characterization of Geometric Isomers of Tetra-Substitutes Phthalocyanines / p68 (0039.jp2)
  43. §5-5. Syntheses of LeadII Tetra(tert-butyl) phthalocyanine / p74 (0042.jp2)
  44. §5-6. Preparation of Lightly Substituted Phthalocyanines and Their Intermediates / p74 (0042.jp2)
  45. §5-7. Conclusion / p77 (0043.jp2)
  46. §5-8. References / p78 (0044.jp2)
  47. CHAPTER6:CHARACTERIZATION OF LANGMUIR-BLODGETT FILMS OF PHTHALOCYANINES WITH SHORT ALKYL SUBSTITUENTS / p79 (0044.jp2)
  48. §6-1. Introduction / p79 (0044.jp2)
  49. §6-2. Force-Area Isotherms / p80 (0045.jp2)
  50. §6-3. UV-Visible Absorption Spectra / p80 (0045.jp2)
  51. §6-4. Power X-Ray Diffraction Pattrens / p81 (0045.jp2)
  52. §6-5. Assembled Structures / p83 (0046.jp2)
  53. §6-6. Conclusion / p85 (0047.jp2)
  54. §6-7. References / p85 (0047.jp2)
  55. CHAPTER7:ELECTRICAL PROPERTIES OF LANGMUIR-BLODGETT FILMS OF PHTHALOCYANINES WITH SHORT ALKYL SUBSTITUENTS / p87 (0048.jp2)
  56. §7-1. Introduction / p87 (0048.jp2)
  57. §7-2. Experimental / p88 (0049.jp2)
  58. §7-3. In-Plane Conductivity of Langmuir-Blodgett Films / p88 (0049.jp2)
  59. §7-4. Response in Conductivity Change under Exposure to Active Gases / p89 (0049.jp2)
  60. §7-5. Theories for Elactrical Conductivity / p92 (0051.jp2)
  61. §7-6. Relation Between Electrical Responses and Elactronic Potential Parameters / p93 (0051.jp2)
  62. §7-7. Conclusion / p95 (0052.jp2)
  63. §7-8. References / p95 (0052.jp2)
  64. CHAPTERE8:NEW TETRAPYRROLIC MACROCYCLE:α,β,γ-TRIAZATETRABENZCORROLE / p97 (0053.jp2)
  65. §8-1. Introduction / p97 (0053.jp2)
  66. §8-2. Measurement / p98 (0054.jp2)
  67. §8-3. Syntheses / p98 (0054.jp2)
  68. §8-4. Re-Characterization of GermaniumII Phthalocyanine and identification of μ-HydroxygermaniumIⅤ α,β,γ-Triazatetrabenzcarrole / p100 (0055.jp2)
  69. §8-5. Characterization of Other Metalloid α,β,γ-Triazatetrabenzcorroles / p104 (0057.jp2)
  70. §8-6. Deconposition GermaniumIⅤ α,β,γ-Triazatetrabezcorroles / p106 (0058.jp2)
  71. §8-7. Ring Contractive Reaction Mechanism of germaniumIⅤ Phthalocyanine / p107 (0058.jp2)
  72. §8-8. Molecular Symmetry of germaniumIⅤ α,β,γ-Triazatetrabenzcorrole / p107 (0058.jp2)
  73. §8-9. Conclusion / p112 (0061.jp2)
  74. §8-10. References / p112 (0061.jp2)
  75. CHAPTER9:CONCLUDING REMARKS / p115 (0062.jp2)
  76. ACKNOWLEDGEMENTS / p119 (0064.jp2)
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各種コード

  • NII論文ID(NAID)
    500000093412
  • NII著者ID(NRID)
    • 8000000093638
  • DOI(NDL)
  • NDL書誌ID
    • 000000257726
  • データ提供元
    • NDL-OPAC
    • NDLデジタルコレクション
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