AI Article Synopsis

  • - Recent advancements in p-type SnS thermoelectric materials have been hindered by a lack of progress in n-type materials, which are crucial for device construction.
  • - Researchers have created n-type PbSnS through alloying with lead, achieving a promising maximum ZT (figure of merit) of ~1.2, thanks to improved power factors and very low thermal conductivity.
  • - By optimizing carrier concentration through Cl doping and utilizing multiple conduction bands, the PbSnS shows potential for efficient power generation, with a maximum efficiency of ~2.7% in a single-leg thermoelectric device.

Article Abstract

Great progress has been achieved in p-type SnS thermoelectric compound recently, while the stagnation of the n-type counterpart hinders the construction of thermoelectric devices. Herein, n-type sulfide PbSnS with isostructural to SnS is obtained through Pb alloying and achieves a maximum ZT of ~1.2 and an average ZT of ~0.75 within 300-773 K, which originates from enhanced power factor and intrinsically ultralow thermal conductivity. Combining the optimized carrier concentration by Cl doping and enlarged Seebeck coefficient through activating multiple conduction bands evolutions with temperature, favorable power factors are maintained. Besides, the electron doping stabilizes the phase of PbSnS and the complex-crystal-structure induced strong anharmonicity results in ultralow lattice thermal conductivity. Moreover, a maximum power generation efficiency of ~2.7% can be acquired in a single-leg device. Our study develops a n-type sulfide PbSnS with high performance, which is a potential candidate to match the excellent p-type SnS.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9547848PMC
http://dx.doi.org/10.1038/s41467-022-33684-0DOI Listing

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