Endotaxial nanostructures can reduce lattice thermal conductivity through enhancing phonon scattering without affecting electrical transport, leading to a high thermoelectric performance. On the other hand, band engineering can enhance electrical transport by improving the Seebeck coefficient through valence band convergence and the resonance level. In this paper, the synergistic effect of band engineering and endotaxial nanostructures was implemented in SnTe thermoelectric materials by alloying with AgCuTe and doping with Indium. The positron annihilation lifetime spectra show that the vacancy concentration in SnTe was reduced after alloying with AgCuTe, which led to a decreasing hole concentration and improved carrier mobility. Additional...
SnTe is an emerging lead-free IV-VI thermoelectric compound, but the high hole concentration, low Se...
Convergence of L and Σ valence bands through alloying with monotellurides, has successfully realized...
SnTe, as a top Pb-free alternative to PbTe, attracts extensive attention for thermoelectric applicat...
As an eco-friendly thermoelectric material, SnTe has attracted extensive attention. In this study, w...
As an eco-friendly thermoelectric material, SnTe has attracted extensive attention. In this study, w...
As an eco-friendly thermoelectric material, SnTe has attracted extensive attention. In this study, w...
Due to the eco-friendly nature, tin telluride (SnTe) based thermoelectric materials have attracted e...
Due to the eco-friendly nature, tin telluride (SnTe) based thermoelectric materials have attracted e...
The temperature-dependent evolution of heavy-hole valence band contribution to the Seebeck coefficie...
The introduction of special alloy nanoparticles and elemental elements in the matrix can synergistic...
SnTe, with the same rock-salt structure as PbTe, is a potentially attractive thermoelectric material...
Interface engineering has been regarded as an effective strategy to improve thermoelectric (TE) perf...
Interface engineering has been regarded as an effective strategy to improve thermoelectric (TE) perf...
SnTe, a lead-free rock-salt analogue of PbTe, having valence band structure similar to PbTe, recentl...
Much effort has recently been directed at advancing thermoelectric SnTe as an alternative to PbTe. E...
SnTe is an emerging lead-free IV-VI thermoelectric compound, but the high hole concentration, low Se...
Convergence of L and Σ valence bands through alloying with monotellurides, has successfully realized...
SnTe, as a top Pb-free alternative to PbTe, attracts extensive attention for thermoelectric applicat...
As an eco-friendly thermoelectric material, SnTe has attracted extensive attention. In this study, w...
As an eco-friendly thermoelectric material, SnTe has attracted extensive attention. In this study, w...
As an eco-friendly thermoelectric material, SnTe has attracted extensive attention. In this study, w...
Due to the eco-friendly nature, tin telluride (SnTe) based thermoelectric materials have attracted e...
Due to the eco-friendly nature, tin telluride (SnTe) based thermoelectric materials have attracted e...
The temperature-dependent evolution of heavy-hole valence band contribution to the Seebeck coefficie...
The introduction of special alloy nanoparticles and elemental elements in the matrix can synergistic...
SnTe, with the same rock-salt structure as PbTe, is a potentially attractive thermoelectric material...
Interface engineering has been regarded as an effective strategy to improve thermoelectric (TE) perf...
Interface engineering has been regarded as an effective strategy to improve thermoelectric (TE) perf...
SnTe, a lead-free rock-salt analogue of PbTe, having valence band structure similar to PbTe, recentl...
Much effort has recently been directed at advancing thermoelectric SnTe as an alternative to PbTe. E...
SnTe is an emerging lead-free IV-VI thermoelectric compound, but the high hole concentration, low Se...
Convergence of L and Σ valence bands through alloying with monotellurides, has successfully realized...
SnTe, as a top Pb-free alternative to PbTe, attracts extensive attention for thermoelectric applicat...