Solid solutions of magnesium silicide and magnesium stannide were recently reported to have high thermoelectric figure-of-merits (<i>ZT</i>) due to remarkably low thermal conductivity, which was conjectured to come from phonon scattering by segregated Mg<sub>2</sub>Si and Mg<sub>2</sub>Sn phases without detailed study. However, it is essential to identify the main cause for further improving <i>ZT</i> as well as estimating its upper bound. Here we synthesized Mg<sub>2</sub>(Si,Sn) with nanoparticles and segregated phases, and theoretically analyzed and estimated the thermal conductivity upon segregated fraction and extraneous nanoparticle addition by fitting experimentally obtained thermal conductivity, electrical conductivity, and thermopo...
The thermoelectric properties of Mg2vSnvxSiv1-x solid solution with varying phase structure were inv...
Considering the effect of CO<sub>2</sub> emission together with the depletion of fossil fuel resourc...
International audienceThe thermoelectric performance of Mg2Si-containing nanomaterials are predicted...
Owing to the high thermoelectric (TE) conversion efficiency, low cost, and environmental friendlines...
International audienceIn this work, we produce bulk nanostructured Mg2Si0.4Sn0.6 thermoelectric mate...
International audienceIn this work, we produce bulk nanostructured Mg2Si0.4Sn0.6 thermoelectric mate...
International audienceIn this work, we produce bulk nanostructured Mg2Si0.4Sn0.6 thermoelectric mate...
International audienceIn this work, we produce bulk nanostructured Mg2Si0.4Sn0.6 thermoelectric mate...
In this work, we produce bulk nanostructured Mg2Si0.4Sn0.6 thermoelectric materials made of nanograi...
International audienceIn this work, we produce bulk nanostructured Mg2Si0.4Sn0.6 thermoelectric mate...
International audienceIn this work, we produce bulk nanostructured Mg2Si0.4Sn0.6 thermoelectric mate...
International audienceIn this work, we produce bulk nanostructured Mg2Si0.4Sn0.6 thermoelectric mate...
In this work, we produce bulk nanostructured Mg2Si0.4Sn0.6 thermoelectric materials made of nanograi...
Solid solutions of magnesium silicide and magnesium stannide exhibit excellent thermoelectric proper...
Solid solutions of magnesium silicide and magnesium stannide exhibit excellent thermoelectric proper...
The thermoelectric properties of Mg2vSnvxSiv1-x solid solution with varying phase structure were inv...
Considering the effect of CO<sub>2</sub> emission together with the depletion of fossil fuel resourc...
International audienceThe thermoelectric performance of Mg2Si-containing nanomaterials are predicted...
Owing to the high thermoelectric (TE) conversion efficiency, low cost, and environmental friendlines...
International audienceIn this work, we produce bulk nanostructured Mg2Si0.4Sn0.6 thermoelectric mate...
International audienceIn this work, we produce bulk nanostructured Mg2Si0.4Sn0.6 thermoelectric mate...
International audienceIn this work, we produce bulk nanostructured Mg2Si0.4Sn0.6 thermoelectric mate...
International audienceIn this work, we produce bulk nanostructured Mg2Si0.4Sn0.6 thermoelectric mate...
In this work, we produce bulk nanostructured Mg2Si0.4Sn0.6 thermoelectric materials made of nanograi...
International audienceIn this work, we produce bulk nanostructured Mg2Si0.4Sn0.6 thermoelectric mate...
International audienceIn this work, we produce bulk nanostructured Mg2Si0.4Sn0.6 thermoelectric mate...
International audienceIn this work, we produce bulk nanostructured Mg2Si0.4Sn0.6 thermoelectric mate...
In this work, we produce bulk nanostructured Mg2Si0.4Sn0.6 thermoelectric materials made of nanograi...
Solid solutions of magnesium silicide and magnesium stannide exhibit excellent thermoelectric proper...
Solid solutions of magnesium silicide and magnesium stannide exhibit excellent thermoelectric proper...
The thermoelectric properties of Mg2vSnvxSiv1-x solid solution with varying phase structure were inv...
Considering the effect of CO<sub>2</sub> emission together with the depletion of fossil fuel resourc...
International audienceThe thermoelectric performance of Mg2Si-containing nanomaterials are predicted...