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Updated: Apr 7, 2026

Author Spotlight: Advancing Energy Solutions Using Nanocomposites as Processed Thermoelectric Materials
Published on: May 17, 2024
Enhancing the thermoelectric figure of merit in engineered graphene nanoribbons
Hatef Sadeghi1, Sara Sangtarash1, Colin J Lambert1
1Quantum Technology Centre, Department of Physics, Lancaster University, LA1 4YB Lancaster, UK.
Abstract:
We demonstrate that thermoelectric properties of graphene nanoribbons can be dramatically improved by introducing nanopores. In monolayer graphene, this increases the electronic thermoelectric figure of merit ZT e from 0.01 to 0.5. The largest values of ZT e are found when a nanopore is introduced into bilayer graphene, such that the current flows from one layer to the other via the inner surface of the pore, for which values as high as ZT e = 2.45 are obtained. All thermoelectric properties can be further enhanced by tuning the Fermi energy of the leads.

