Introduction to Thermoelectricity L2.5: Systems - Topping Cycle Applications
Introduction to Thermoelectricity L2.4: Systems - TE Cost/Performance Tradeoff
Introduction to Thermoelectricity L2.7: Systems - Summary
nanoHUB-U Thermoelectricity L2.0: Thermoelectric Transport Parameters - Short Introduction
nanoHUB-U Thermoelectricity L2.5: Thermoelectric Transport Parameters - Lattice Thermal Conductivity
Introduction to Thermoelectricity L2.1: Systems - Importance of ZT (material figure-of-merit)
Introduction to Thermoelectricity L2.6: Systems - Peltier Coolers
nanoHUB-U Thermoelectricity L4.5: Thermoelectric Systems - Ballistic coolers/non-linear Peltier
nanoHUB-U Thermoelectricity L2.4: Thermoelectric Transport Parameters - Novel Materials & Structures
nanoHUB-U Thermoelectricity: Scientific Overview Shakouri-Datta-Lundstrom
nanoHUB-U Thermoelectricity L5.4: Recent Advances - Skutterudites, Oxide Thermoelectrics, etc.
nanoHUB-U Thermoelectricity L4.2: Thermoelectric Systems - Thermoelectric cost/efficiency trade off
nanoHUB-U Thermoelectricity L2.3: Thermoelectric Transport Parameters - Devices and Materials
Quantum thermoelectrics for ac driven quantum systems
Mercouri Kanatzidis, Nanostructured Thermoelectrics
Introduction to Thermoelectricity L2.3: Systems - Thermoelectrics for Power Generation Applications
nanoHUB-U Thermoelectricity L5.2: Recent Advances - Semiconductors with Embedded Nanoparticles
nanoHUB-U Thermoelectricity L4.4: Thermoelectric Systems - Graded materials, TE leg geometry impact
Introduction to Thermoelectricity L1.1: Theory - Introduction
nanoHUB-U Thermoelectricity L4.1: Thermoelectric Systems - Thermoelectric Cooling/Power Generation