Quantum Materials II

FOCUS · D02 · ID: 3955634




Presentations

  • Intercalation–Defect Synergy as a Co-Design Framework for Tunable 2D Quantum Materials

    ORAL · Invited

    Publication: 1. Kastuar, S. M., Rzepa, C., Rangarajan, S., & Ekuma, C. E. (2024). A high-throughput and data-driven computational framework for novel quantum materials. APL Machine Learning, 2(4).
    2. Iloanya, A. C., Kastuar, S. M., Jana, G., & Ekuma, C. E. (2025). Atomic-scale intercalation and defect engineering for enhanced magnetism and optoelectronic properties in atomically thin GeS. Scientific Reports, 15(1), 4546.
    3. Kastuar, S. M., & Ekuma, C. E. (2024). Chemically tuned intermediate band states in atomically thin Cu x GeSe/SnS quantum material for photovoltaic applications. Science Advances, 10(15), eadl6752.
    4. Lian, T., Iloanya, A. C., & Ekuma, C. E. (2025). Strain-tunable magnetism in hydrogen-functionalized WSe2 monolayer. Applied Physics Letters, 126(16).
    5. Lian, T., Iloanya, A. C., Kastuar, S. M., Jana, G., & Ekuma, C. E. (2025). Defect-induced bipolar magnetism in atomically thin GeS. Journal of Applied Physics, 137(23).

    Presenters

    • Chinedu E Ekuma

      Lehigh University

    Authors

    • Chinedu E Ekuma

      Lehigh University

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  • Exploring Predicted Sulfide Superconductors: Synthesis, Characterization, and Validation

    ORAL

    Publication: [1] ] Benjamin SM. Estimating the single-element concentration of intercalated insulators for the emergence of superconductivity. ACS Phys Chem Au 2022;2:108–17.

    [2] ] Benjamin SM. Intercalate superconductivity and van der Waals Equation. ACS Mater Au 2022;2:436–9

    Presenters

    • Mason B McFarland

      Gettysburg college

    Authors

    • Mason B McFarland

      Gettysburg college

    • Shermane M Benjamin

      National High Magnetic Field Laboratory

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  • Co-existence of Commensurate and Incommensurate Spin Density Waves in Magnetic Kagome Metal TbTi<sub>3</sub>Bi<sub>4</sub>

    ORAL

    Publication: E. Cheng et al. Interwoven magnetic kagome metal overcomes geometric frustration. Nat. Mater. Accepted (2025).

    Presenters

    • Wenqing Chen

      Rutgers University

    Authors

    • Wenqing Chen

      Rutgers University

    • Erjian Cheng

      Max Planck Institute

    • Kaipu Wang

      ShanghaiTech University

    • Yiqing Hao

      Oak Ridge National Laboratory

    • Hengxin Tan

      Weizmann Institute of Science

    • Kaipu Wang

      ShanghaiTech University

    • Yifeng Yang

      /

    • Zhongkai Liu

      ShanghaiTech University

    • Claudia Felser

      Max Planck Institute for Chemical Physics of Solids

    • Weida Wu

      Rutgers University

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