【Springer 表面科学ハンドブック】
Springer Handbook of Surface Science (Springer Handbooks) '20
内容
目次
1. Roughening Transition: Theories and Experiments 2. Surface Diffusion 3. Surface Thermodynamics and Vibrational Entropy 4. Crystallography of Surfaces 5. Ab Initio Simulations of Semiconductor Surfaces and Interfaces 6. Surfaces of Bulk Oxides 7. Crystallography of Metal Surfaces and Adsorbed Layers 8. Local Information with Scanning Tunneling Microscopy 9. Two-Dimensional Crystals: Graphene, Silicene, Germanene, and Stanene 10. Thin Oxide Films as Model Systems for Heterogeneous Catalysts 11. Integrated Experimental Methods for the Investigation of the Electronic Structure of Molecules on Surfaces 12. Electronic States of Vicinal Surfaces 13. Imaging at the Mesoscale (LEEM, PEEM) 14. Scanning Photoelectron Microscopy: Past, Present and Future 15. Natural Topological Insulator Heterostructures 16. Energetic Ground State Calculations, Electronic Band Structure at Surfaces 17. Electron Energy-Loss and Photoelectron Spectroscopies of Surfaces and Two-Dimensional Crystals 18. Surface Plasmons and Plasmonics 19. Plasmons in One and Two Dimensions 20. Ab Initio Theory of Interband Transitions 21. Magnetic Surfaces, Thin Films and Nanostructures 22. Magnetic Properties of Oxide Surfaces and Films 23. Surface Phonons: Theoretical Methods and Results 24. Electron–Phonon Interaction on Metallic Surfaces, Overlayers and Thin Films 25. Spatially Resolved Surface Vibrational Spectroscopies 26. Adsorption Sites, Bonding Configurations, Reactions and Mass Transport Surface 27. Gas Surface Interaction and Surface Reactions 28. Nonadiabatic Effects in Gas-Surface Dynamics 29. Self-assembly of Organic Molecules at Metal Surfaces 30. Energetics of Adsorption: Single Crystal Calorimetry 31. Kinetics of Adsorption, Desorption and Reactions at Surfaces 32. State Resolved Sticking Probability in Gas-Surface Interaction 33. From Surface Science to Industrial Heterogeneous Catalysis 34. Electrochemical Behavior of Single Crystal Electrodes on Model Processes 35. Selected Topics in Contact Mechanics and Nanotribology 36. Graphene 37. Silicene 38. Cluster-Assembled Carbon Thin Films 39. Nuclear Methods in Surface Science
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