2D Supramolecular Chemistry on surfaces is a highly emerging topic. This handbook presents all aspects like hydrogen-bonded frameworks, nanographenes, multicomponent assemblies, 2D coordination networks and many more. A must-have and indispensable reference.
2D Supramolecular Chemistry on surfaces is a highly emerging topic. This handbook presents all aspects like hydrogen-bonded frameworks, nanographenes, multicomponent assemblies, 2D coordination networks and many more. A must-have and indispensable reference. Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Neil R. Champness is the Norman Haworth Professor of Chemistry at the University of Birmingham, UK. His research focus is on chemical nanoscience and all aspects of molecular organization, particularly with respect to synthetic methods using self-assembly.
Inhaltsangabe
Two-Dimensional Supramolecular Chemistry on Surfaces Characterisation and Interpretation of On-Surface Chemical Reactions Studied by Ultra-High Resolution Scanning Probe Microscopy Complexity in Two-Dimensional Multicomponent Assembly Complexity in Two-Dimensional Assembly: Using Coordination Bonds Complexity in Two-Dimensional Assembly: Quasicrystalline Structures Using Self-Assembly to Control On-Surface Reactions Covalently Bonded Organic Structures Via On-Surface Synthesis Hybrid Organic-2D TMD Heterointerfaces: Towards Devices Using 2D Materials Surface Self-Assembly of Hydrogen-Bonded Frameworks
Two-Dimensional Supramolecular Chemistry on Surfaces Characterisation and Interpretation of On-Surface Chemical Reactions Studied by Ultra-High Resolution Scanning Probe Microscopy Complexity in Two-Dimensional Multicomponent Assembly Complexity in Two-Dimensional Assembly: Using Coordination Bonds Complexity in Two-Dimensional Assembly: Quasicrystalline Structures Using Self-Assembly to Control On-Surface Reactions Covalently Bonded Organic Structures Via On-Surface Synthesis Hybrid Organic-2D TMD Heterointerfaces: Towards Devices Using 2D Materials Surface Self-Assembly of Hydrogen-Bonded Frameworks
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