Heteroanionic Stabilization of Ni<sup>1+</sup> with Nonplanar Coordination in Layered Nickelates
ORAL
Abstract
We present electronic structure calculations on layered nickelate oxyfluorides derived from the Ruddlesden-Popper arisotype structure in search of unidentified materials that may host nickelate superconductivity. By performing anion exchange of oxygen with fluorine, we design two heteroanionic polymorphs with Ni1+ in 4-coordinate and 5-coordinate square planar and square pyramidal geometries, respectively. We suggest chemical reactions to guide their synthesis. These oxyfluorides are weakly correlated antiferromagnetic insulators and their nonmagnetic phases exhibit quasi-2D Fermi surfaces dominated by Ni dx2−y2 states, which strikingly resemble undoped cuprate superconductors. We use our understanding to propose doping strategies and layered nickelate oxyfluorides with tunable electronic and magnetic structures for experimentation.
*Electronic structure studies were supported by the National Science Foundation (NSF)through award DMR-2011208 while the synthesis science efforts were supported by theNSF’s MRSEC program (DMR-1720319) at the Materials Research Center of NorthwesternUniversity. Calculations were performed using the Department of Defense High PerformanceComputing Modernization Program (DOD-HPCMP) and the Carbon cluster at the Center forNanoscale Materials, a U.S. Department of Energy Office of Science User Facility, supportedby the U.S. DOE, Office of Basic Energy Sciences, under Contract No. DE-AC02-06CH11357
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Presenters
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Danilo Puggioni
- Northwestern University