Bi0.86Ba0.14CuSeO/xCu2–ySe (0.05 ≤ x ≤ 0.15; y = 0 and 0.2) composites were fabricated by spark plasma sintering, and the crystal structure and thermoelectric properties of the Bi0.86Ba0.14CuSeO/xCu2–ySe composites were studied. The composites contained Cu2–ySe (y = 0 and 0.2) nanoinclusions in a tetragonal Bi0.86Ba0.14CuSeO matrix. To increase the electrical conductivities of Bi0.86Ba0.14CuSeO, we introduced Cu2–ySe nanoinclusions with a high electrical conductivity into the matrix. The introduction of Cu2–ySe nanoinclusions reduced the structural distortion of CuSe4 tetrahedra and the effective mass, thereby enhancing the carrier mobility. A significant increase in electrical conductivities was achieved with increasing Cu2–ySe nanoinclusi...
Recently, Cu-containing p-type Bi0.5Sb1.5Te3 materials have shown high thermoelectric performances a...
In order to understand the effect of Pb-CuI co-doping on the thermoelectric performance of Bi2Te3, n...
Copper selenide (Cu2Se) has been extensively studied as an eco-friendly thermoelectric candidate owi...
With the capacity of energy conversion from heat to electricity directly, thermoelectric materials h...
Thermoelectric materials have drawn great attention due to their ability to convert heat directly in...
To achieve the optimized performance and the widespread application of thermoelectric materials, it ...
Cu3SbSe3-based composites have been prepared by self-propagating high-temperature synthesis (SHS) co...
Constructing a nanocomposite to introduce a coherent interface is an effective way to improve the pr...
P-type Bi2-xSbxTe3 is one of the most mature and widely used thermoelectric (TE) materials. Enhancin...
The concept of nanocomposite/nanostructuring in thermoelectric materials has been proven to be an ef...
We suggest a simple and scalable synthesis to prepare Cu-Bi2Te2.7Se0.3 (Cu-BTS) nanocomposites. By p...
We herein report an enhancement of the thermoelectric performance of spark plasma sintered polycryst...
© 2019 American Chemical Society.The thermoelectric (TE) community has mainly focused on improving t...
The figure of merit (zT) of a thermoelectric material can be enhanced by incorporation of nanoinclus...
Appropriately designed nanocomposites allow improving the thermoelectric performance by several mech...
Recently, Cu-containing p-type Bi0.5Sb1.5Te3 materials have shown high thermoelectric performances a...
In order to understand the effect of Pb-CuI co-doping on the thermoelectric performance of Bi2Te3, n...
Copper selenide (Cu2Se) has been extensively studied as an eco-friendly thermoelectric candidate owi...
With the capacity of energy conversion from heat to electricity directly, thermoelectric materials h...
Thermoelectric materials have drawn great attention due to their ability to convert heat directly in...
To achieve the optimized performance and the widespread application of thermoelectric materials, it ...
Cu3SbSe3-based composites have been prepared by self-propagating high-temperature synthesis (SHS) co...
Constructing a nanocomposite to introduce a coherent interface is an effective way to improve the pr...
P-type Bi2-xSbxTe3 is one of the most mature and widely used thermoelectric (TE) materials. Enhancin...
The concept of nanocomposite/nanostructuring in thermoelectric materials has been proven to be an ef...
We suggest a simple and scalable synthesis to prepare Cu-Bi2Te2.7Se0.3 (Cu-BTS) nanocomposites. By p...
We herein report an enhancement of the thermoelectric performance of spark plasma sintered polycryst...
© 2019 American Chemical Society.The thermoelectric (TE) community has mainly focused on improving t...
The figure of merit (zT) of a thermoelectric material can be enhanced by incorporation of nanoinclus...
Appropriately designed nanocomposites allow improving the thermoelectric performance by several mech...
Recently, Cu-containing p-type Bi0.5Sb1.5Te3 materials have shown high thermoelectric performances a...
In order to understand the effect of Pb-CuI co-doping on the thermoelectric performance of Bi2Te3, n...
Copper selenide (Cu2Se) has been extensively studied as an eco-friendly thermoelectric candidate owi...