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Chemistry
Applied and Interdisciplinary Chemistry
Nanochemistry
1. Introduction to Nanochemistry
2. Synthesis of Nanomaterials
3. Supramolecular Chemistry and Self-Assembly
4. Classes of Nanomaterials
5. Characterization of Nanomaterials
6. Unique Properties at the Nanoscale
7. Applications of Nanochemistry
8. Nanotoxicology and Safety
Supramolecular Chemistry and Self-Assembly
Principles of Molecular Self-Assembly
Thermodynamics of Self-Assembly
Kinetics of Self-Assembly
Spontaneity and Reversibility
Non-Covalent Interactions
Hydrogen Bonding
Van der Waals Forces
Pi-Pi Stacking
Electrostatic Interactions
Hydrophobic Effects
Self-Assembled Monolayers
Formation Mechanisms
Surface Functionalization
Applications in Sensors
Applications in Electronics
Langmuir-Blodgett Films
Monolayer Formation at Air-Water Interface
Transfer to Solid Substrates
Control of Film Thickness
Control of Film Uniformity
Block Copolymer Assembly
Microphase Separation
Spherical Nanostructure Formation
Cylindrical Nanostructure Formation
Lamellar Nanostructure Formation
Applications in Nanolithography
DNA Nanotechnology
DNA Origami
Programmable Self-Assembly
Applications in Nanodevices
Applications in Sensing
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2. Synthesis of Nanomaterials
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4. Classes of Nanomaterials