Thermoelectric thin-film architecture has the advantage over bulk by reducing further the thermal conductivity and increasing the figure of merit. The present work demonstrates the structural requirement to enhance the figure of merit and hardness of a SnSe thin film over bulk. The SnSe thin films were deposited over the glass substrate at different substrate temperatures (Ts) using the magnetron-sputtering technique. The bulk and the deposited films of SnSe were characterized by XRD, SEM, EDS, Raman spectroscopy, HRTEM, Nano-indentation, and thermoelectric properties (Seebeck coefficient, electrical, and thermal conductivities) measurement techniques. The structural, compositional, thermoelectrical, and mechanical analyses of films were us...
In the last few years, the thermoelectric properties of tin selenide (SnSe) have been explored in mu...
Thermoelectric materials offer an alternative opportunity to tackle the energy crisis and environmen...
Thermoelectric materials offer an alternative opportunity to tackle the energy crisis and environmen...
SnSe single crystals have been demonstrated to possess excellent thermoelectric properties. In this ...
SnSe single crystals have been demonstrated to possess excellent thermoelectric properties. In this ...
The discovery of SnSe single crystals with record high thermoelectric efficiency along the b-axis ha...
Thermoelectric SnSe exhibits a very high figure of merit, and the a-axis orientation is needed becau...
Abstract Given the growing demand for environmentally friendly energy sources, thermoelectric energy...
Owing to the increase in the demand for energy autonomy in electronic systems, there has been increa...
Single crystals of SnSe have been reported to have very high thermoelectric efficiencies with a maxi...
Tin selenide (SnSe) is a promising thermoelectric material because of its advantageous electronic st...
Single crystals of SnSe have been reported to have very high thermoelectric efficiencies with a maxi...
SnSe2 has been of great interest as the n-type semiconductor exhibits high thermoelectric (TE) perfo...
In the present work, we report a solution-based strategy to produce crystallographically textured Sn...
et al.Tin Selenide (SnSe), a thermoelectric material of the chalcogenide family, has attracted treme...
In the last few years, the thermoelectric properties of tin selenide (SnSe) have been explored in mu...
Thermoelectric materials offer an alternative opportunity to tackle the energy crisis and environmen...
Thermoelectric materials offer an alternative opportunity to tackle the energy crisis and environmen...
SnSe single crystals have been demonstrated to possess excellent thermoelectric properties. In this ...
SnSe single crystals have been demonstrated to possess excellent thermoelectric properties. In this ...
The discovery of SnSe single crystals with record high thermoelectric efficiency along the b-axis ha...
Thermoelectric SnSe exhibits a very high figure of merit, and the a-axis orientation is needed becau...
Abstract Given the growing demand for environmentally friendly energy sources, thermoelectric energy...
Owing to the increase in the demand for energy autonomy in electronic systems, there has been increa...
Single crystals of SnSe have been reported to have very high thermoelectric efficiencies with a maxi...
Tin selenide (SnSe) is a promising thermoelectric material because of its advantageous electronic st...
Single crystals of SnSe have been reported to have very high thermoelectric efficiencies with a maxi...
SnSe2 has been of great interest as the n-type semiconductor exhibits high thermoelectric (TE) perfo...
In the present work, we report a solution-based strategy to produce crystallographically textured Sn...
et al.Tin Selenide (SnSe), a thermoelectric material of the chalcogenide family, has attracted treme...
In the last few years, the thermoelectric properties of tin selenide (SnSe) have been explored in mu...
Thermoelectric materials offer an alternative opportunity to tackle the energy crisis and environmen...
Thermoelectric materials offer an alternative opportunity to tackle the energy crisis and environmen...