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      Atomic Level Defect Structure Engineering for Unusually High Average Thermoelectric Figure of Merit in n‐Type PbSe Rivalling PbTe

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          Abstract

          Realizing high average thermoelectric figure of merit (ZT ave) and power factor (PF ave) has been the utmost task in thermoelectrics. Here the new strategy to independently improve constituent factors in ZT is reported, giving exceptionally high ZT ave and PF ave in n‐type PbSe. The nonstoichiometric, alloyed composition and resulting defect structures in new Pb 1+ x Se 0.8Te 0.2 ( x = 0–0.125) system is key to this achievement. First, incorporating excess Pb unusually increases carrier mobility ( µ H) and concentration ( n H) simultaneously in contrast to the general physics rule, thereby raising electrical conductivity ( σ). Second, modifying charge scattering mechanism by the authors’ synthesis process boosts a magnitude of Seebeck coefficient ( S) above theoretical expectations. Detouring the innate inverse proportionality between n H and µ H; and σ and S enables independent control over them and change the typical trend of PF to temperature, giving remarkably high PF ave ≈20 µW cm −1 K −2 from 300 to 823 K. The dual incorporation of Te and excess Pb generates unusual antisite Pb at the anionic site and displaced Pb from the ideal position, consequently suppressing lattice thermal conductivity. The best composition exhibits a ZT ave of ≈1.2 from 400 to 823 K, one of the highest reported for all n‐type PbQ (Q = chalcogens) materials.

          Abstract

          The dual incorporation of Te and excess Pb generates unusual antisite Pb at the anionic site and displaces Pb from the ideal position, which extraordinarily enhances the power factor and depresses thermal conductivity, thereby boosting average ZT to 1.2 from 400 to 823 K, even comparable to the record‐high value for n‐type PbTe.

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          Comprehensive Handbook of Chemical Bond Energies

          Yu-Ran Luo (2007)
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            Atom Probe Microscopy

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              Author and article information

              Contributors
              zhongqishi@mail.xjtu.edu.cn
              inchung@snu.ac.kr
              Journal
              Adv Sci (Weinh)
              Adv Sci (Weinh)
              10.1002/(ISSN)2198-3844
              ADVS
              Advanced Science
              John Wiley and Sons Inc. (Hoboken )
              2198-3844
              26 October 2022
              December 2022
              : 9
              : 35 ( doiID: 10.1002/advs.v9.35 )
              : 2203782
              Affiliations
              [ 1 ] State Key Laboratory for Mechanical Behavior of Materials Xi'an Jiaotong University Xi'an 710049 China
              [ 2 ] School of Chemical and Biological Engineering and Institute of Chemical Processes Seoul National University Seoul 08826 Republic of Korea
              [ 3 ] Center for Correlated Electron Systems Institute for Basic Science (IBS) Seoul 08826 Republic of Korea
              [ 4 ] Key Lab of Photovoltaic and Energy Conservation Materials Institute of Solid State Physics HFIPS Chinese Academy of Sciences Hefei 230031 China
              [ 5 ] State Key Laboratory of New Ceramics and Fine Processing School of Materials Science and Engineering Tsinghua University Beijing 100190 China
              [ 6 ] National Center for Inter‐University Research Facilities Seoul National University Seoul 08826 Republic of Korea
              [ 7 ] School of Materials Science and Engineering Jiangsu University Zhenjiang 212013 China
              Author notes
              Author information
              https://orcid.org/0000-0002-1444-218X
              https://orcid.org/0000-0001-6432-5670
              https://orcid.org/0000-0002-2245-3057
              https://orcid.org/0000-0001-6274-3369
              Article
              ADVS4651
              10.1002/advs.202203782
              9762289
              36285809
              78233bcd-da0b-495c-84b3-92930c1716e7
              © 2022 The Authors. Advanced Science published by Wiley‐VCH GmbH

              This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.

              History
              : 11 September 2022
              : 30 June 2022
              Page count
              Figures: 11, Tables: 0, Pages: 14, Words: 10510
              Funding
              Funded by: National Research Foundation of Korea , doi 10.13039/501100003725;
              Award ID: NRF‐2020R1A2C2011111
              Award ID: NRF‐2017M3A7B4049274
              Funded by: Institute for Basic Science , doi 10.13039/501100010446;
              Award ID: IBS‐R009‐G2
              Funded by: National Natural Science Foundation of China , doi 10.13039/501100001809;
              Award ID: 92163112
              Award ID: 51872222
              Funded by: Shaanxi Innovation Capacity Support Program
              Award ID: 2018TD‐031
              Funded by: Xi'an Municipal Science and Technology Project
              Award ID: 2020KJRC0056
              Funded by: 111 project 2.0
              Award ID: BP2018008
              Funded by: Yalong River Joint Fund , doi 10.13039/501100019490;
              Award ID: 92163112
              Award ID: 51872222
              Categories
              Research Article
              Research Articles
              Custom metadata
              2.0
              December 19, 2022
              Converter:WILEY_ML3GV2_TO_JATSPMC version:6.2.3 mode:remove_FC converted:19.12.2022

              average thermoelectric figure of merit,nanoscale defect,pbse,power factor,thermoelectric

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