
nanoHUB-U: Organic Electronic Devices
Course overview Offering: 01a Section: Default
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closeUnit 1: Semiconductor Synthesis and Characterization
Lectures
- L1.1: An Introduction to Organic Electronic Materials
- L1.2: Synthesis of Poly (3-alkylthiophenes) (P3ATs)
- L1.3: Synthesis of Low Bandgap Polymers
- L1.4: Molecular and Thermal Characterization
- L1.5: Structural and Optical Characterization
Homework
- Unit 1: Homework Solution and Tutorial
Unit 2: Electronic Structure
Lectures
- L2.1: Atomic and Molecular Orbitals
- L2.2: The Schrödinger Equation
- L2.3: Application of the Schrödinger Equation
- L2.4: The Fermi Energy and The Density of States
- L2.5: Carrier Densities in Intrinsic Semiconductors
Homework
- Unit 2: Homework Solultion and Tutorial
Unit 3: Organic Field-Effect Transistors (OFETs) and Organic Light Emitting Devices (OLEDs)
Lectures
- L3.1: Charge Transport via a Hopping Mechanism
- L3.2: Doping in Semiconducting Materials
- L3.3: Multiple Trap and Release (MTR) Model
- L3.4: Transport in Disordered Semiconductors
- L3.5: Organic Field-Effect Transistors
Homework
- Unit 3: Homework Solultion and Tutorial
Unit 4: Organic Photovoltaic (OPV) and Emerging Organic Electronic Devices
Lectures
- L4.1: Overview of Organic Photovoltaic Devices
- L4.2: Characterizing Device Parameters in OPVs
- L4.3: Nanostructural Impacts in OPV Devices
- L4.4: Interfacial Modifying Layers in OPV Devices
- L4.5: Emerging Trends in OPV Devices
Homework
- Unit 4: Homework Assignment
- Unit 4: Homework Solution and Tutorial
Unit 5: Photovoltaic and Emerging Devices
Lectures
- L5.1: Introduction to Organic Light-emitting Devices
- L5.2: Design Considerations for OLEDs
- L5.3: Introduction to Polymer Thermoelectric Devices
- L5.4: State-of-the-Art in Polymer Thermoelectrics
- L5.5: Course Review and Summary
Homework
- T5.1: Homework Solultion Tutorial