The thermoelectric properties of zigzag graphene nanoribbons (ZGNRs) are sensitive to chemical modification. In this study, we employed density functional theory (DFT) combined with the nonequilibrium green’s function (NEGF) formalism to investigate the thermoelectric properties of a ZGNR system by impurity substitution of single and double nitrogen (N) atoms into the edge of the nanoribbon. N-doping changes the electronic transmission probability near the Fermi energy and suppresses the phononic transmission. This results in a modified electrical conductance, thermal conductance, and thermopower. Ultimately, simultaneous increase of the thermopower and suppression of the electron and phonon contributions to the thermal conductance leads to...
The effects of nitrogen substitutional doping in the Stone-Wales (SW) defect on the electronic trans...
Thermoelectric materials can convert thermal energy and electrical energy into each other, which hav...
We have investigated the thermoelectric properties of armchair graphene nanoribbons with defects and...
Control of both the regularity of a material ensemble and nanoscale architecture provides unique opp...
In view of the experimental breakthrough and unique geometric structure, through using the nonequili...
Nanomaterials provide unique promise to thermoelectric energy conversion owing to their possible pho...
The transport properties of zigzag graphene nanoribbons (ZGNRs) with different patterns of vacancies...
International audienceWe study the effects of isotope doping and vacancies on the electronic, phonon...
The effect of concentration and position of boron atoms as impurities in graphene nanoribbon has bee...
The effect of concentration and position of boron atoms as impurities in graphene nanoribbon has bee...
International audienceThe enhancement of thermoelectric figure of merit ZT requires to either increa...
International audienceWe study the effects of isotope doping and vacancies on the electronic, phonon...
International audienceWe study the effects of isotope doping and vacancies on the electronic, phonon...
Thermoelectric effects of graphene – hexagonal boron nitride (hBN) nanoribbons have been investigate...
International audienceThe enhancement of thermoelectric figure of merit ZT requires to either increa...
The effects of nitrogen substitutional doping in the Stone-Wales (SW) defect on the electronic trans...
Thermoelectric materials can convert thermal energy and electrical energy into each other, which hav...
We have investigated the thermoelectric properties of armchair graphene nanoribbons with defects and...
Control of both the regularity of a material ensemble and nanoscale architecture provides unique opp...
In view of the experimental breakthrough and unique geometric structure, through using the nonequili...
Nanomaterials provide unique promise to thermoelectric energy conversion owing to their possible pho...
The transport properties of zigzag graphene nanoribbons (ZGNRs) with different patterns of vacancies...
International audienceWe study the effects of isotope doping and vacancies on the electronic, phonon...
The effect of concentration and position of boron atoms as impurities in graphene nanoribbon has bee...
The effect of concentration and position of boron atoms as impurities in graphene nanoribbon has bee...
International audienceThe enhancement of thermoelectric figure of merit ZT requires to either increa...
International audienceWe study the effects of isotope doping and vacancies on the electronic, phonon...
International audienceWe study the effects of isotope doping and vacancies on the electronic, phonon...
Thermoelectric effects of graphene – hexagonal boron nitride (hBN) nanoribbons have been investigate...
International audienceThe enhancement of thermoelectric figure of merit ZT requires to either increa...
The effects of nitrogen substitutional doping in the Stone-Wales (SW) defect on the electronic trans...
Thermoelectric materials can convert thermal energy and electrical energy into each other, which hav...
We have investigated the thermoelectric properties of armchair graphene nanoribbons with defects and...