Related lectures (36)
Photodetectors and LEDs: Optoelectronics Overview
Explores the optical properties of TMDCs, band gap tuning, and emerging photoluminescence in Monolayer MoS₂, as well as the integration of photodetectors in IT systems.
Optical Properties of Semiconductors
Explores the optical properties of semiconductors, including absorption spectrum changes and exciton physics.
Excitons and Polaron Formation
Explores exciton and polaron formation in polymers, along with the effects of chemical doping and structural dynamics.
Density of States in Semiconductor Devices
Explores density of states in semiconductor devices, covering electron gas, energy bands, Fermi-Dirac distribution, and band structures.
Optoelectronic and Electronic Phenomena
Explores exciton binding, singlets and triplets, relaxation processes, mobility, and transport of charges in organic semiconductors.
Photodetectors and LEDs
Explores the optical properties of TMDCs in optoelectronics and IT devices, focusing on band structure, excitons, and band gap tuning.
Photodetectors and LEDs
Explores optoelectronics in the IT context, focusing on TMDCs' optical properties, excitons, band gap tuning, photoluminescence, and integrated photodetectors.
Excitonic Devices: Manipulation and Applications
Explores exciton manipulation in devices and their potential applications for low-power computing and optoelectronic components.
Organic Semiconductors: Chemistry and Conduction
Explores the chemistry and conduction mechanisms of organic semiconductors, including hybridization, conjugation, singlets, triplets, exciton binding, and relaxation processes.
Beyond CMOS Devices: Limits and Concepts
Delves into the fundamental limits of power dissipation in computing and explores emerging concepts using 2D materials.

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