International audiencen-Type polycrystalline SnSe with Ti, Pb co-doping was synthesized by combining mechanical alloying (MA) with spark plasma sintering (SPS). It is revealed that Ti is an effective cationic dopant to convert SnSe from a p-type to an n-type semiconductor, and the thermoelectric performance of the Ti-doped SnSe is also improved in comparison with the pristine sample due to an enhanced power factor. Furthermore, after further Pb doping, an obviously improved electrical conductivity together with a moderate Seebeck coefficient can be achieved, which results in an improvement of the power factor with a maximum value of 300 mu W m(-1) K-2 at 773 K. Meanwhile, the lattice thermal conductivity is significantly reduced because of ...
In this study, we introduce multi-walled carbon nanotubes (MWCNTs) in Pb/I co-doped n-type polycryst...
In this study, we introduce multi-walled carbon nanotubes (MWCNTs) in Pb/I co-doped n-type polycryst...
In this study, we report a record peak Figure of Merit (ZT) of 1.36 ± 0.12 in polycrystalline SnSe m...
International audiencen-Type polycrystalline SnSe with Ti, Pb co-doping was synthesized by combining...
Both p- and n-type SnSe single crystals have been reported to possess high thermoelectric performanc...
© 2019 American Chemical Society.Despite extensive studies on emerging thermoelectric material SnSe,...
Tin selenide (SnSe) based thermoelectric materials are being explored for making inexpensive and eff...
LaCl3 doped polycrystalline SnSe was synthesized by combining mechanical alloying (MA) process with ...
LaCl3 doped polycrystalline SnSe was synthesized by combining mechanical alloying (MA) process with ...
A series of PbBr2-doped polycrystalline SnSe samples were synthesized by melting and hot pressing. B...
N-type SnSe compound has been synthesized through melting with spark plasma sintering. By doping BiC...
Thermoelectric materials can directly convert heat and electricity, which is a kind of promising ene...
Thermoelectric materials, which directly convert heat into electricity based on the Seebeck effects,...
Tin selenide (SnSe) is a promising thermoelectric material because of its advantageous electronic st...
In this study, we introduce multi-walled carbon nanotubes (MWCNTs) in Pb/I co-doped n-type polycryst...
In this study, we introduce multi-walled carbon nanotubes (MWCNTs) in Pb/I co-doped n-type polycryst...
In this study, we introduce multi-walled carbon nanotubes (MWCNTs) in Pb/I co-doped n-type polycryst...
In this study, we report a record peak Figure of Merit (ZT) of 1.36 ± 0.12 in polycrystalline SnSe m...
International audiencen-Type polycrystalline SnSe with Ti, Pb co-doping was synthesized by combining...
Both p- and n-type SnSe single crystals have been reported to possess high thermoelectric performanc...
© 2019 American Chemical Society.Despite extensive studies on emerging thermoelectric material SnSe,...
Tin selenide (SnSe) based thermoelectric materials are being explored for making inexpensive and eff...
LaCl3 doped polycrystalline SnSe was synthesized by combining mechanical alloying (MA) process with ...
LaCl3 doped polycrystalline SnSe was synthesized by combining mechanical alloying (MA) process with ...
A series of PbBr2-doped polycrystalline SnSe samples were synthesized by melting and hot pressing. B...
N-type SnSe compound has been synthesized through melting with spark plasma sintering. By doping BiC...
Thermoelectric materials can directly convert heat and electricity, which is a kind of promising ene...
Thermoelectric materials, which directly convert heat into electricity based on the Seebeck effects,...
Tin selenide (SnSe) is a promising thermoelectric material because of its advantageous electronic st...
In this study, we introduce multi-walled carbon nanotubes (MWCNTs) in Pb/I co-doped n-type polycryst...
In this study, we introduce multi-walled carbon nanotubes (MWCNTs) in Pb/I co-doped n-type polycryst...
In this study, we introduce multi-walled carbon nanotubes (MWCNTs) in Pb/I co-doped n-type polycryst...
In this study, we report a record peak Figure of Merit (ZT) of 1.36 ± 0.12 in polycrystalline SnSe m...