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      Superconductivity in Te-Deficient ZrTe 2

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          Abstract

          We present structural, electrical, and thermoelectric potential measurements on high-quality single crystals of ZrTe 1.8 grown from isothermal chemical vapor transport. These measurements show that the Te-deficient ZrTe 1.8, which forms the same structure as the nonsuperconducting ZrTe 2, is superconducting below 3.2 K. The temperature dependence of the upper critical field (H c2 ) deviates from the behavior expected in conventional single-band superconductors, being best described by an electron–phonon two-gap superconducting model with strong intraband coupling. For the ZrTe 1.8 single crystals, the Seebeck potential measurements suggest that the charge carriers are predominantly negative, in agreement with the ab initio calculations. Through first-principles calculations within DFT, we show that the slight reduction of Te occupancy in ZrTe 2 unexpectedly gives origin to density of states peaks at the Fermi level due to the formation of localized Zr- d bands, possibly promoting electronic instabilities at the Fermi level and an increase at the critical temperature according to the standard BCS theory. These findings highlight that the Te deficiency promotes the electronic conditions for the stability of the superconducting ground state, suggesting that defects can fine-tune the electronic structure to support superconductivity.

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            Self-Consistent Equations Including Exchange and Correlation Effects

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                Author and article information

                Journal
                J Phys Chem C Nanomater Interfaces
                J Phys Chem C Nanomater Interfaces
                jy
                jpccck
                The Journal of Physical Chemistry. C, Nanomaterials and Interfaces
                American Chemical Society
                1932-7447
                1932-7455
                08 March 2023
                16 March 2023
                : 127
                : 10
                : 5162-5168
                Affiliations
                []Universidade de São Paulo, Escola de Engenharia de Lorena, DEMAR , 12612-550 Lorena, Brazil
                []Institute of Theoretical and Computational Physics, Graz University of Technology , NAWI Graz, 8010 Graz, Austria
                []Instituto de Ciências Tecnológicas e Exatas, Universidade Federal do Triângulo Mineiro , 38025-180 Uberaba, Minas Gerais, Brazil
                [§ ]Department of Physics, San Diego State University , San Diego, California 92182-1233, United States
                Author notes
                Author information
                https://orcid.org/0000-0003-2870-9436
                https://orcid.org/0000-0002-1135-0570
                https://orcid.org/0000-0001-6044-5106
                https://orcid.org/0000-0001-9693-9183
                Article
                10.1021/acs.jpcc.2c08836
                10026068
                36960103
                fc18aa0e-f979-4ad8-9bcd-62680f11cdc2
                © 2023 The Authors. Published by American Chemical Society

                Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained ( https://creativecommons.org/licenses/by/4.0/).

                History
                : 17 December 2022
                : 27 February 2023
                Funding
                Funded by: Fundação de Amparo à Pesquisa do Estado de São Paulo, doi 10.13039/501100001807;
                Award ID: 2018/08819-2
                Funded by: Austrian Science Fund, doi 10.13039/501100002428;
                Award ID: 32144-N36
                Funded by: Coordenação de Aperfeiçoamento de Pessoal de Nível Superior, doi 10.13039/501100002322;
                Award ID: NA
                Funded by: Fundação de Amparo à Pesquisa do Estado de São Paulo, doi 10.13039/501100001807;
                Award ID: 2021/14322-6
                Funded by: Fundação de Amparo à Pesquisa do Estado de São Paulo, doi 10.13039/501100001807;
                Award ID: 2021/13441-1
                Funded by: Fundação de Amparo à Pesquisa do Estado de São Paulo, doi 10.13039/501100001807;
                Award ID: 2020/08258-0
                Funded by: Fundação de Amparo à Pesquisa do Estado de São Paulo, doi 10.13039/501100001807;
                Award ID: 2019/17878-5
                Funded by: Fundação de Amparo à Pesquisa do Estado de São Paulo, doi 10.13039/501100001807;
                Award ID: 2019/14359-7
                Categories
                Article
                Custom metadata
                jp2c08836
                jp2c08836

                Thin films & surfaces
                Thin films & surfaces

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