Discovery of novel high-performance materials with earth-abundant and environmentally friendly elements is a key task for civil applications based on advanced thermoelectric technology. Advancements in this area are greatly limited by the traditional trial-and-error method, which is both time-consuming and expensive. The materials genome initiative can provide a powerful strategy to screen for potential novel materials using high-throughput calculations, materials characterization, and synthesis. In this study, we developed a modified diffusion-couple high-throughput synthesis method and an automated histogram analysis technique to quickly screen high-performance copper chalcogenide thermoelectric materials, which has been well demonstrated...
In an ever-changing global environment, energy-related issues have become a central feature in the d...
International audienceThis study shows that the design of copper-rich sulfides by mimicking natural ...
Thermoelectric devices make it possible for direct energy conversion between heat and electricity. I...
Copper chalcogenides have been the subject of extensive research as promising candidates in thermoel...
International audienceThe recent paper by Deng et al. showed that a copper sulphide with Cu7Sn3S10 c...
Équipe 103 : Composés intermétalliques et matériaux hybridesInternational audienceThis paper describ...
High-throughput (HTP) material design is an emerging field and has been proved to be powerful in the...
In this study, we, for the first time, report a high Cu solubility of 11.8% in single crystal SnSe m...
Synthetic minerals and related systems based on Cu–S are attractive thermoelectric (TE) materials be...
International audienceIn recent years, thermoelectric materials inspired from the natural mineral co...
In an ever-changing global environment, energy-related issues have become a central feature in the d...
International audienceThis study shows that the design of copper-rich sulfides by mimicking natural ...
Thermoelectric devices make it possible for direct energy conversion between heat and electricity. I...
Copper chalcogenides have been the subject of extensive research as promising candidates in thermoel...
International audienceThe recent paper by Deng et al. showed that a copper sulphide with Cu7Sn3S10 c...
Équipe 103 : Composés intermétalliques et matériaux hybridesInternational audienceThis paper describ...
High-throughput (HTP) material design is an emerging field and has been proved to be powerful in the...
In this study, we, for the first time, report a high Cu solubility of 11.8% in single crystal SnSe m...
Synthetic minerals and related systems based on Cu–S are attractive thermoelectric (TE) materials be...
International audienceIn recent years, thermoelectric materials inspired from the natural mineral co...
In an ever-changing global environment, energy-related issues have become a central feature in the d...
International audienceThis study shows that the design of copper-rich sulfides by mimicking natural ...
Thermoelectric devices make it possible for direct energy conversion between heat and electricity. I...