activity
20242026
collaborators

5 papers

cond-mat.mtrl-sci2026

High-entropy FeVAl-based thermoelectric modules with improved conversion efficiency

Michael Parzer, Geoffrey Roy, Fabian Garmroudi +4

Thermoelectric (TE) materials enable the direct conversion of heat into electricity and are attractive for sustainable energy applications. For practical deployment, TE materials m…

cond-mat.mtrl-sci2025

-type RuTiHfSi full-Heusler bulk thermoelectrics with

Fabian Garmroudi, Illia Serhiienko, Michael Parzer +4

Heusler compounds have emerged as important thermoelectric materials due to their combination of promising electronic transport properties, mechanical robustness and chemical stabi…

physics.data-an2025

SeeBand: A highly efficient, interactive tool for analyzing electronic transport data

Michael Parzer, Alexander Riss, Fabian Garmroudi +3

Linking the fundamental physics of band structure and scattering theory with macroscopic features such as measurable bulk thermoelectric transport properties is indispensable to a…

cond-mat.mtrl-sci2025

Energy filtering-induced ultrahigh thermoelectric power factors in NiGe

Fabian Garmroudi, Simone Di Cataldo, Michael Parzer +15

Traditional thermoelectric materials rely on low thermal conductivity to enhance their efficiency but suffer from inherently limited power factors. Novel pathways to optimize elect…

cond-mat.mtrl-sci2024

Thermoelectric transport in RuTiSi full-Heusler compounds

Fabian Garmroudi, Michael Parzer, Takao Mori +2

Heusler compounds with six valence electrons per atom have attracted interest as thermoelectric materials owing to their semimetallic and semiconducting properties. Here, we theore…