Thermoelectric materials strengthened by defect engineering can also suffer from the compromise of plasticity, and in turn results in negative effect on the processability, reliability and durability of thermoelectric devices. Here, we introduce nano-twinned CuAgSe secondary phase to achieve simultaneously increased compressive strength and plasticity of the β-Ag2Se pellets without obviously sacrificing the thermoelectric performance, as evidenced by our thermoelectric measurements. Our pellet shows a maximum compressive strength of 96 MPa, which is ∼104% higher than that of pristine Ag2Se, ascribed to the impeded crack propagation by the CuAgSe secondary phase. An extraordinary deformation value of ∼19% is observed at the maximum compressi...
Abstract The flexible thermoelectric technique, which can convert heat from the human body to electr...
For the application of thermoelectric materials, high figure-of-merit, ZT, endows them high energy c...
Recent studies have shown that thermoelectric materials exhibit a high figure-of-merit if it consist...
Thermoelectric materials strengthened by defect engineering can also suffer from the compromise of p...
Inorganic semiconductor Ag2S with excellent plasticity is highly desired in flexible and wearable th...
We report a simple experimental strategy for enhancing the figure-of-merit (ZT) of thermoelectric ma...
Cu0.2Ag2.8SbSeTe2 is new potential thermoelectric compound that exhibits very low thermal conductivi...
Recently, copper chalcogenides have attracted great attention due to their potential application for...
Self-powered wearable electronics require thermoelectric materials simultaneously with a high dimens...
Copper selenide (Cu2Se) based materials are currently being investigated globally for efficient phot...
Thermoelectric materials and their devices can realize the solid-state energy conversion between the...
In the field of thermoelectrics, CuSe has attracted extensive attention due to its ultralow lattice ...
Increasing the figure of merit ZT of thermoelectric (TE) alloys is a challenge that is currently att...
As one of promising thermoelectric materials with intrinsic high figure of merit (ZT), Cu<inf>...
Thermoelectric conversion from low-grade heat to electricity is regarded as the highly reliable and ...
Abstract The flexible thermoelectric technique, which can convert heat from the human body to electr...
For the application of thermoelectric materials, high figure-of-merit, ZT, endows them high energy c...
Recent studies have shown that thermoelectric materials exhibit a high figure-of-merit if it consist...
Thermoelectric materials strengthened by defect engineering can also suffer from the compromise of p...
Inorganic semiconductor Ag2S with excellent plasticity is highly desired in flexible and wearable th...
We report a simple experimental strategy for enhancing the figure-of-merit (ZT) of thermoelectric ma...
Cu0.2Ag2.8SbSeTe2 is new potential thermoelectric compound that exhibits very low thermal conductivi...
Recently, copper chalcogenides have attracted great attention due to their potential application for...
Self-powered wearable electronics require thermoelectric materials simultaneously with a high dimens...
Copper selenide (Cu2Se) based materials are currently being investigated globally for efficient phot...
Thermoelectric materials and their devices can realize the solid-state energy conversion between the...
In the field of thermoelectrics, CuSe has attracted extensive attention due to its ultralow lattice ...
Increasing the figure of merit ZT of thermoelectric (TE) alloys is a challenge that is currently att...
As one of promising thermoelectric materials with intrinsic high figure of merit (ZT), Cu<inf>...
Thermoelectric conversion from low-grade heat to electricity is regarded as the highly reliable and ...
Abstract The flexible thermoelectric technique, which can convert heat from the human body to electr...
For the application of thermoelectric materials, high figure-of-merit, ZT, endows them high energy c...
Recent studies have shown that thermoelectric materials exhibit a high figure-of-merit if it consist...