TY  - JOUR
AU  - Spirito, Davide
AU  - von den Driesch, Nils
AU  - Manganelli, Costanza Lucia
AU  - Zoellner, Marvin Hartwig
AU  - Corley-Wiciak, Agnieszka Anna
AU  - Ikonic, Zoran
AU  - Stoica, Toma
AU  - Grützmacher, Detlev
AU  - Buca, Dan Mihai
AU  - Capellini, Giovanni
TI  - Thermoelectric Efficiency of Epitaxial GeSn Alloys for Integrated Si-Based Applications: Assessing the Lattice Thermal Conductivity by Raman Thermometry
JO  - ACS applied energy materials
VL  - 4
IS  - 7
SN  - 2574-0962
CY  - Washington, DC
PB  - ACS Publications
M1  - FZJ-2021-05142
SP  - 7385 - 7392
PY  - 2021
AB  - Energy harvesting for Internet of Things applications,comprising sensing, life sciences, wearables, and communications, requiresefficient thermoelectric (TE) materials, ideally semiconductors compatiblewith Si technology. In this work, we investigate the potential of GeSn/Gelayers, a group IV material system, as TE material for low-grade heatconversion. We extract the lattice thermal conductivity, by developing ananalytical model based on Raman thermometry and heat transport model,and use it to predict thermoelectric performances. The lattice thermalconductivity decreases from 56 W/(m·K) for Ge to 4 W/(m·K) byincreasing the Sn atomic composition to 14%. The bulk cubic Ge0.86Sn0.14alloy features a TE figure of merit of ZT ∼ 0.4 at 300 K and an impressive1.04 at 600 K. These values are extremely promising in view of the use ofGeSn/Ge layers operating in the typical on-chip temperature range.
LB  - PUB:(DE-HGF)16
UR  - <Go to ISI:>//WOS:000678382900105
DO  - DOI:10.1021/acsaem.1c01576
UR  - https://juser.fz-juelich.de/record/903470
ER  -