Small Organic Molecule-Catalyzed Synthesis of a Van der Waals Flat-band Superconductor
ORAL
Abstract
Van der Waals (vdW) layered materials provide an exciting platform to explore structure-property relationships due to their high tunability in multiple dimensions. Novel vdW materials offer opportunities to study emerging quantum phenomena, particularly as they approach the two-dimensional limit. Moreover, the vdW gaps can host foreign species that modify the properties of the inorganic host layers through charge transfer or host-guest interactions. In this study, we present a small organic molecule-catalyzed synthesis method that converts a small-gap vdW semiconductor into an all-inorganic vdW superconductor with a transition temperature of 3.8 K. This vdW superconductor can be exfoliated into ultrathin flakes while maintaining its superconducting properties. Specifically, we uncovered the reaction mechanism through a combination of advanced chemical characterization techniques and transport measurements, emphasizing its role in the discovery of this new vdW superconductor. Additionally, angle-resolved photoemission spectroscopy (ARPES) reveals that this superconductor features a flat band close to the Fermi surface.
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Presenters
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Xiaoyu Song
Columbia University
Authors
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Xiaoyu Song
Columbia University
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Ziyu Liu
Columbia University
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Asish Kumar Kundu
Brookhaven National Laboratory (BNL)
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Myung-Geun Han
Brookhaven National Laboratory
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Scott Docherty
Columbia University
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Junsik Mun
Brookhaven National Laboratory
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Qifeng Jiang
Columbia University
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Daniel G Chica
Columbia University, Northwestern University, Columbia
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Michael E Ziebel
Columbia University
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Emma York
Columbia University
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Cory R Dean
Columbia University
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Yimei Zhu
Brookhaven National Laboratory (BNL)
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Colin Nuckolls
Columbia University
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Abhay Pasupathy
Columbia University, Brookhaven National Laboratory (BNL)
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Xavier Roy
Columbia University