Mixed Hydroxide Flux and Field-Tailoring Technology for Novel Quantum Materials Synthesis
ORAL · Invited
Abstract
We first delve into a recently developed mixed-flux method [1-3] to overcome thermodynamic barriers and stabilize kinetic phases. With this technique, we synthesized a new layered material of KxNi4S2, whose ground state changes from a Dirac-metal to a flat-band induced magnetic metal, depending on K-content. In addition, by incorporating a monolayer of Ni-Pb sheet, we synthesized a novel layered compound, KPbNi5S2. Furthermore, KPbNi5S2 can be stacked with KNi2S2 to create another heterolayered [KPbNi5S2][KNi2S2].
Next, we show how inherent lattice distortions can be mitigated by a newly developed field-tailoring technology that applies magnetic field during crystal growth [4]. This development addresses a major challenge of our research community: numerous theoretical works predicting exotic states for spin-orbit-coupled, strongly correlated materials have rarely been experimentally confirmed. These discrepancies are due chiefly to the extreme sensitivity to inherently structural distortions. Using 5d iridates as examples, we demonstrate that “field-altered” materials not only are much less distorted but also exhibit phenomena absent in their “non-altered” counterparts.
In conclusion, we demonstrate two new versatile synthesis techniques that pave the way for quantum materials by design. These methods open new avenues for discovering novel quantum states and materials otherwise unavailable.
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Publication: [1] X. Zhou et al., Nature 612, 72 (2022).<br>[2] X. Zhou, D. J. Mandia, H. Park, M. Balasubramanian, L. Yu, J. Wen, A. Yakovenko, D. Y. Chung, and M. G. Kanatzidis, Journal of the American Chemical Society 143, 13646 (2021).<br>[3] X. Zhou et al., Nature Synthesis 1, 729 (2022).<br>[4] G. Cao, H. Zhao, B. Hu, N. Pellatz, D. Reznik, P. Schlottmann, and I. Kimchi, npj Quantum Materials 5, 83 (2020).
Presenters
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Hengdi Zhao
Argonne National Laboratory
Authors
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Hengdi Zhao
Argonne National Laboratory
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Xiuquan Zhou
Georgetown University
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Duck Young Chung
Argonne National Laboratory
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Stephan Rosenkranz
Argonne National Laboratory
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Gang Cao
University of Colorado, Boulder
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Mercouri G Kanatzidis
Northwestern University, Department of Chemistry, Northwestern University