Owing to the intrinsically good near-room-temperature thermoelectric performance, β-Ag2Se has been considered as a promising alternative to n-type Bi2Te3 thermoelectric materials. Herein, we develop an energy- and time-efficient wet mechanical alloying and spark plasma sintering method to prepare porous β-Ag2Se with hierarchical structures including high-density pores, a metastable phase, nanosized grains, semi-coherent grain boundaries, high-density dislocations, and localized strains, leading to an ultralow lattice thermal conductivity of ∼0.35 W m–1 K–1 at 300 K. A relatively high carrier mobility is obtained by adjusting the sintering temperature to obtain pores with an average size of ∼260 nm, therefore resulting in a figure of merit, ...
The development of n-type high-performance PbTe thermoelectric materials for matching its p-type cou...
Porous structure possesses full potentials to develop high-performance thermoelectric materials with...
Inorganic semiconductor Ag2S with excellent plasticity is highly desired in flexible and wearable th...
Owing to the intrinsically good near-room-temperature thermoelectric performance, β-Ag2Se has been c...
In the field of thermoelectrics, CuSe has attracted extensive attention due to its ultralow lattice ...
Discovering high-performance near-room-temperature thermoelectric materials is extremely imperative ...
As one of promising thermoelectric materials with intrinsic high figure of merit (ZT), Cu2Se provide...
Superionic CuSe has attracted extensive research interest as a promising thermoelectric material wit...
Compatible p- and n-type materials are necessary for high-performance GeTe thermoelectric modules, w...
Thermoelectric conversion from low-grade heat to electricity is regarded as the highly reliable and ...
α-MgAgSb shows promise as a potential new low-temperature thermoelectric (TE) material and has been ...
As one of promising thermoelectric materials with intrinsic high figure of merit (ZT), Cu2Se provide...
Porous structure possesses full potentials to develop high-performance thermoelectric materials with...
The development of n-type high-performance PbTe thermoelectric materials for matching its p-type cou...
Porous structure possesses full potentials to develop high-performance thermoelectric materials with...
Inorganic semiconductor Ag2S with excellent plasticity is highly desired in flexible and wearable th...
Owing to the intrinsically good near-room-temperature thermoelectric performance, β-Ag2Se has been c...
In the field of thermoelectrics, CuSe has attracted extensive attention due to its ultralow lattice ...
Discovering high-performance near-room-temperature thermoelectric materials is extremely imperative ...
As one of promising thermoelectric materials with intrinsic high figure of merit (ZT), Cu2Se provide...
Superionic CuSe has attracted extensive research interest as a promising thermoelectric material wit...
Compatible p- and n-type materials are necessary for high-performance GeTe thermoelectric modules, w...
Thermoelectric conversion from low-grade heat to electricity is regarded as the highly reliable and ...
α-MgAgSb shows promise as a potential new low-temperature thermoelectric (TE) material and has been ...
As one of promising thermoelectric materials with intrinsic high figure of merit (ZT), Cu2Se provide...
Porous structure possesses full potentials to develop high-performance thermoelectric materials with...
The development of n-type high-performance PbTe thermoelectric materials for matching its p-type cou...
Porous structure possesses full potentials to develop high-performance thermoelectric materials with...
Inorganic semiconductor Ag2S with excellent plasticity is highly desired in flexible and wearable th...