2022
DOI: 10.1002/adfm.202113164
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Seeking New Layered Oxyselenides with Promising Thermoelectric Performance

Abstract: Layered oxyselenides have been widely investigated as promising thermoelectric materials due to their unique merits such as super‐lattice structural features and intrinsic complexity, which contributes to low thermal conductivity and easily controllable electrical properties. Newly developed Bi2LnO4Cu2Se2 (Ln stands for lanthanide) oxyselenides are found to be potential thermoelectric systems since they have excellent electrical conductivity over 103 S cm−1. In this work, unique energy and time‐saving method c… Show more

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Cited by 15 publications
(19 citation statements)
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“…Based on the assumption of the single parabolic band mode and acoustic phonon scattering, we calculated the room temperature m d * of all the samples (Table 1). The correlations could be found elsewhere 25,26 …”
Section: Resultsmentioning
confidence: 96%
“…Based on the assumption of the single parabolic band mode and acoustic phonon scattering, we calculated the room temperature m d * of all the samples (Table 1). The correlations could be found elsewhere 25,26 …”
Section: Resultsmentioning
confidence: 96%
“…For some compounds, they could be synthesized by atmospheric solid‐state reaction method 7,9,21 . Here we use a method combining self‐propagating reaction (SHS) with SPS to prepare targeted ceramics directly 24 . For some compounds, they could only be fabricated at high pressure and/or high temperature, such as Sr 2 CuO 2 Cu 2 Se 2 (0.4 GPa, 773 K), 19 Ba 2 CuO 2 Cu 2 Se 2 (5.5 GPa, 1273 K), 20 Ba 2 NiO 2 Ag 2 Se 2 (7 GPa, 1123 K), 34 and Ba 2 CoO 2 Ag 2 Se 2 (5 GPa, 1123 K) 16…”
Section: Resultsmentioning
confidence: 99%
“…The synthesis of Sr 2 MO 2 Cu 2 Se 2 (M = Co, Ni, Zn) is a two‐step reaction that combines self‐propagating high‐temperature synthesis with SPS 24 . To synthesis Sr 2 CoO 2 Cu 2 Se 2 , Sr 2 NiO 2 Cu 2 Se 2 , and Sr 2 ZnO 2 Cu 2 Se 2 , SrO (99.9%), Cu (99.99%), Se (99.99%) and metal powers Co (99.99%), Ni (99.99%), Zn (99.99%) were weighted by mole ratio of 2:2:2:1 and then fully mixed and pressed into a cylindrical shape at a pressure of 2 MPa.…”
Section: Methodsmentioning
confidence: 99%
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