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Related lectures (13)
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Beyond CMOS: Emerging Concepts and Limits
Covers fundamental limits to power dissipation, emerging 2D material concepts, and excitonic devices for reversible computing.
Beyond CMOS Devices: Valleytronics and Excitonic Devices
Delves into valleytronics, excitonic devices, and their potential for future optoelectronic applications.
Heterogeneous Catalysis: MoS2 Catalysts
Explores critical analysis of scientific papers and the design of MoS2 catalysts for hydrogen evolution reactions, emphasizing nanostructuring and catalyst characterization.
2D Electronic Devices and Materials
Explores 2D electronic devices and materials, including graphene, transition metal dichalcogenides, excitons, and valleytronics.
Van der Waals Materials: 2D Crystals
Explores the properties of van der Waals materials, focusing on 2D crystals with unique bonding and layer coupling.
Introduction to 2D Materials
Introduces 2D materials, FETs, optoelectronics, post-CMOS concepts, and the historical impact of Moore's Law on semiconductor devices.
Photoconductors: Examples and Applications
Covers various photoconductors, their characteristics, applications, and the trade-offs between speed and gain in infrared detection.
Van der Waals Materials: Properties and Applications
Explores the programmable nature of van der Waals materials and their unique properties, including twistronics and quantum transport.
Contact Resistance in Semiconductor Devices
Explores contact resistance in semiconductor devices, quantum resistance, quantized conductance, spin injection challenges, and strategies for reducing contact resistance.
Introduction: 2D Materials
Covers the introduction to 2D materials, charge scattering mechanisms, epitaxy, and growth techniques.
Heat Dissipation in Field-Effect Transistors
Explores heat dissipation challenges in field-effect transistors and the potential of MOS2 and graphene for electronic devices.
Beyond CMOS Devices: Limits and Concepts
Delves into the fundamental limits of power dissipation in computing and explores emerging concepts using 2D materials.
Nanoscale MEMS or NEMS
Covers the transition to nanoscale devices, nanoscale imaging, capillary forces, AFM of graphene, and integrated sensors & actuators.
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