| Introduction | p. 1 |
| References | p. 2 |
| Fundamentals | p. 5 |
| Principle of the STM | p. 5 |
| Origin of the Tunneling Current | p. 7 |
| Scanning Tunneling Spectroscopy | p. 9 |
| Contrast Mechanism of Molecular Adsorbates | p. 10 |
| Temperature Programmed Desorption | p. 12 |
| Low Energy Electron Diffraction | p. 14 |
| References | p. 15 |
| Experimental Setup | p. 17 |
| UHV System | p. 17 |
| Scanning Tunneling Microscope | p. 18 |
| Control Electronics and Vibration Isolation | p. 21 |
| Ag(111) | p. 22 |
| Porphyrinoids | p. 24 |
| Preparation of thin Porphyrinoid Layers | p. 25 |
| Vapor-deposition of Cobalt and Iron | p. 27 |
| References | p. 28 |
| Results | |
| Self-Assembly and Individual Appearance of Tetraphenylporphyrins on Ag(111) | p. 31 |
| Introduction | p. 31 |
| Epitaxial Growth | p. 32 |
| Appearance and Intramolecular Conformation | p. 36 |
| Ordering Aspects | p. 37 |
| Conclusion | p. 43 |
| References | p. 44 |
| Self-Assembly and Individual Appearance of Cobalt(II)-Tetrakisditertbutylphenylporphyrins on Ag(111) | p. 47 |
| Polymorphism of CoTTBPP | p. 47 |
| Conclusion | p. 59 |
| Polarity-Dependent Appearance | p. 60 |
| Conclusion | p. 61 |
| References | p. 62 |
| Coordination of Iron and Cobalt Atoms by Tetraphenylporphyrin Monolayers on Ag(111)and Formation of Metal(II)-Tetraphenylporphyrin | p. 63 |
| Introduction | p. 63 |
| Coordination of Post-deposited Iron Atoms by Tetraphenylporphyrin Monolayers | p. 64 |
| Conclusion | p. 68 |
| Coordination of Pre-deposited Iron Atoms by Tetraphenylporphyrin Monolayers | p. 68 |
| Conclusion | p. 71 |
| Coordination of Post-deposited Cobalt Atoms by Tetraphenylporphyrin Monolayers | p. 71 |
| Conclusion | p. 75 |
| Discussion of the Metalation Reaction | p. 75 |
| References | p. 77 |
| Different Aspects of 2H-Tetrakis-di-tert-butylphenylporphyrin on Ag(111) | p. 79 |
| Introduction | p. 79 |
| Monolayer Preparation | p. 80 |
| Arrangement of 2HTTBPP | p. 82 |
| Conclusion | p. 85 |
| Voltage-Dependent Appearance | p. 86 |
| Conclusion | p. 87 |
| Direct Metalation of 2HTTBPP with Co-adsorbed Iron | p. 87 |
| Conclusion | p. 88 |
| References | p. 89 |
| Direct Metalation of a Phthalocyanine Monolayer on Ag(111) with Co-adsorbed Iron Atoms | p. 91 |
| Introduction | p. 91 |
| Results | p. 92 |
| Conclusion | p. 98 |
| References | p. 98 |
| Multicomponent Adlayers of Tetraphenylporphyrins on Ag(111) | p. 101 |
| Understanding the Contrast Mechanism in STM Images of Cobalt Tetraphenylporphyrin on Ag(111) | p. 101 |
| Introduction | p. 102 |
| Results | p. 102 |
| Conclusion | p. 108 |
| Fingerprints of Different Porphyrins | p. 109 |
| Introduction | p. 109 |
| Results | p. 111 |
| Conclusion | p. 120 |
| Addressing Molecular Orbitals of Cobalt- and Iron-Tetraphenylporphyrins by Continuous Imaging Tunneling Spectroscopy | p. 121 |
| Introduction | p. 121 |
| Results | p. 122 |
| Conclusion | p. 127 |
| References | p. 127 |
| Modification of the Growth of Iron on Ag(111) by Predeposited Organic Monolayers | p. 129 |
| Introduction | p. 129 |
| Growth of Fe on Ag(111) | p. 130 |
| Growth of Fe on Ag(111) Precovered with Different Tetrapyrrolic Monolayers | p. 132 |
| Conclusion | p. 139 |
| References | p. 139 |
| Geometric and Electronic Aspects of CoTPP upon Dosage of NO | p. 141 |
| Introduction | p. 141 |
| In Situ Observation of the Rearrangement of CoTPP on Ag(111) | p. 142 |
| Conclusion | p. 146 |
| Modification of the Appearance of CoTPP upon Formation of NO-CoTPP | p. 147 |
| Conclusion | p. 150 |
| References | p. 151 |
| Self-Assembly and Voltage-Dependent Appearance of Octaethylporphyrins | p. 153 |
| Introduction | p. 153 |
| Results | p. 154 |
| Conclusion | p. 158 |
| References | p. 159 |
| Summary and Outlook | p. 161 |
| Molecular Ordering and Intramolecular Conformation | p. 161 |
| Coordination of Metal Atoms by Free Base Porphyrinoids | p. 162 |
| Electronic Properties of Porphyrins | p. 163 |
| Interaction with Small Molecules | p. 163 |
| Outlook | p. 164 |
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