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PUBMED FOR HANDHELDS

Journal Abstract Search


113 related items for PubMed ID: 39031112

  • 1. Pressure-Induced Re-Entrant Superconductivity in Transition Metal Dichalcogenide TiSe2.
    Xia W, Wu J, Xia C, Li Z, Yuan J, An C, Liu X, Wang X, Yu N, Zou Z, Liu G, Feng J, Zhang L, Dong Z, Chen B, Yang Z, Yu Z, Chen H, Guo Y.
    Small; 2024 Nov; 20(45):e2402749. PubMed ID: 39031112
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  • 3. Pressure induced topological and structural phase transitions in 1T-TiSe2: a Raman study.
    Rajaji V, Janaky S, Sarma SC, Peter SC, Narayana C.
    J Phys Condens Matter; 2019 Apr 24; 31(16):165401. PubMed ID: 30677001
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  • 5. Charge-density wave and superconducting dome in TiSe2 from electron-phonon interaction.
    Calandra M, Mauri F.
    Phys Rev Lett; 2011 May 13; 106(19):196406. PubMed ID: 21668182
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  • 7. Pressure controlled transition into a self-induced topological superconducting surface state.
    Zhu Z, Cheng Y, Schwingenschlögl U.
    Sci Rep; 2014 Feb 07; 4():4025. PubMed ID: 24504005
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  • 8. Coexistence of superconductivity and charge density wave instability in A15-Nb3Sn.
    Wu LN, Yang ST, Shen JK, Zhang JS, Liu FH.
    Phys Chem Chem Phys; 2023 Dec 06; 25(47):32452-32459. PubMed ID: 37991918
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  • 11. Record-High Superconductivity in Transition Metal Dichalcogenides Emerged in Compressed 2H-TaS2.
    Dong Q, Pan J, Li S, Fang Y, Lin T, Liu S, Liu B, Li Q, Huang F, Liu B.
    Adv Mater; 2022 Mar 06; 34(9):e2103168. PubMed ID: 34936715
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  • 12. Structural, Vibrational, and Electronic Properties of 1D-TlInTe2 under High Pressure: A Combined Experimental and Theoretical Study.
    Yesudhas S, Yedukondalu N, Jana MK, Zhang J, Huang J, Chen B, Deng H, Sereika R, Xiao H, Sinogeikin S, Kenney-Benson C, Biswas K, Parise JB, Ding Y, Mao HK.
    Inorg Chem; 2021 Jul 05; 60(13):9320-9331. PubMed ID: 34152127
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  • 14. Unconventional Charge-Density-Wave Transition in Monolayer 1T-TiSe2.
    Sugawara K, Nakata Y, Shimizu R, Han P, Hitosugi T, Sato T, Takahashi T.
    ACS Nano; 2016 Jan 26; 10(1):1341-5. PubMed ID: 26624791
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  • 16. Superconductivity of barium with highest transition temperatures in metallic materials at ambient pressure.
    Mito M, Tsuji H, Tajiri T, Nakamura K, Tang Y, Horita Z.
    Sci Rep; 2024 Jan 16; 14(1):965. PubMed ID: 38228687
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  • 17. Pressure-Sensitive Multiple Superconducting Phases and Their Structural Origin in Van der Waals HfS_{2} Up to 160 GPa.
    Zhong W, Zhang H, Karaca E, Zhou J, Kawaguchi S, Kadobayashi H, Yu X, Errandonea D, Yue B, Hong F.
    Phys Rev Lett; 2024 Aug 09; 133(6):066001. PubMed ID: 39178430
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  • 18. Strong electron-phonon coupling and multigap superconductivity in 2H/1T Janus MoSLi monolayer.
    Xie H, Huang Z, Zhao Y, Huang H, Li G, Gu Z, Zeng S.
    J Chem Phys; 2024 Jun 21; 160(23):. PubMed ID: 38904407
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  • 19. Pressure-Quenched Superconductivity in Weyl Semimetal NbP Induced by Electronic Phase Transitions under Pressure.
    Deng W, Zhen J, Huang Q, Wang Y, Dong H, Wan S, Zhang S, Feng J, Chen B.
    J Phys Chem Lett; 2022 Jun 23; 13(24):5514-5521. PubMed ID: 35696320
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  • 20. First-principles study of high-pressure structural phase transition and superconductivity of YBeH8.
    Du J, Jiang Q, Zhang Z, Zhao W, Chen L, Huo Z, Song H, Tian F, Duan D, Cui T.
    J Chem Phys; 2024 Mar 07; 160(9):. PubMed ID: 38445840
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