Thermoelectric devices convert waste heat into electric energy but typically rely on scarce, expensive, and toxic Te-based materials. To address these limitations, we propose the Cu …
A hierarchical structure composed of Pt@ Co 3 O 4/TiO 2 (CTP) ternary nanocomposite was synthesized and demonstrated for its enhanced and durable production of hydrogen from …
In this study, we have successfully controlled the number of secondary phases in Zinc Oxide (ZnO) nano-structures by changing the concentration of Copper (Cu) atoms. Zinc Copper …
With an increase in energy demand and the depletion of conventional fuels, solar cells are emerging as an excellent alternative, providing a sustainable and clean source. Solar cells …
Thermoelectric power generation performance of ZnCuO nanostructures is enhanced by varying the concentration of Cu atoms. This is tested by growing samples of ZnCuO by …
Thin film thermoelectric technology has immense potential to become a next-generation power source for small-scale electronics. However, the rapid development of thin film …
Two-dimensional transition metal dichalcogenide semiconductors (TMDCs) like MoS 2 are becoming more popular as thermoelectric materials because they are abundant, nontoxic …
In this manuscript, we have reported the simultaneous enhancement in Seebeck coefficient and electrical conductivity by controlling the density and size of the grains. The grain …
In this manuscript, low-cost chalcopyrite (CuFeS 2) nanostructures as a potential thermoelectric material are explored. Cu x Fe 1-xS 2 (x= 0, 0.1, 0.3 & 0.5) samples were …