© 2022 Elsevier LtdDesigning irregular but desirable atomic arrangements in crystal lattices of solids can greatly change their intrinsic physical properties beyond expectations from common doping and alloying. However, structures of solids are generally determined by thermodynamic preferences during solid-state reactions, strictly restricting delicate atomic-level lattice engineering. Here, we report a new strategy of realizing desirable defect architecture in a highly predictable way to control thermal and charge transport properties of solids. Introducing unusually high concentration indium to the tetragonal chalcopyrite CuFeS2 to form the Cu1−xInxFeS2 (x = 0–0.12) system stabilizes the highly unusual local structure, namely, high-temper...
Diamond-like compounds represent a large family of new high-performance thermoelectric (TE) material...
Polycrystalline samples with the composition of Cu _(1−x)Fe_(1+x)S_2 (x = 0, 0.01, 0.03, 0.05, 0.1) ...
International audienceUnderstanding the mechanism that connects heat transport with crystal structur...
Advanced thermoelectric technology offers a potential for converting waste industrial heat into usef...
International audienceCopper-based chalcogenides with tetrahedral framework structures have been att...
International audienceAn effective strategy to enhance thermoelectric performance consists of scatte...
Chalcopyrite, CuFeS2 is considered one of the promising n-type thermoelectric materials with high na...
Understanding the mechanism that connects heat transport with crystal structures and order/disorder ...
Chalcopyrite, CuFeS2 is considered one of the promising n-type thermoelectric materials with high na...
Diamond-like compounds represent a large family of new high-performance thermoelectric (TE) material...
Polycrystalline samples with the composition of Cu _(1−x)Fe_(1+x)S_2 (x = 0, 0.01, 0.03, 0.05, 0.1) ...
International audienceUnderstanding the mechanism that connects heat transport with crystal structur...
Advanced thermoelectric technology offers a potential for converting waste industrial heat into usef...
International audienceCopper-based chalcogenides with tetrahedral framework structures have been att...
International audienceAn effective strategy to enhance thermoelectric performance consists of scatte...
Chalcopyrite, CuFeS2 is considered one of the promising n-type thermoelectric materials with high na...
Understanding the mechanism that connects heat transport with crystal structures and order/disorder ...
Chalcopyrite, CuFeS2 is considered one of the promising n-type thermoelectric materials with high na...
Diamond-like compounds represent a large family of new high-performance thermoelectric (TE) material...
Polycrystalline samples with the composition of Cu _(1−x)Fe_(1+x)S_2 (x = 0, 0.01, 0.03, 0.05, 0.1) ...
International audienceUnderstanding the mechanism that connects heat transport with crystal structur...