DFT study identifies atom-unrelated interstitial E* band providing self-doping to Ni1.09+ in La3Ni2O5F, yielding anomalous magnetic behavior with no transition due to 2D fluctuations.
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cond-mat.supr-con 2years
2026 2verdicts
UNVERDICTED 2representative citing papers
High-pressure control of NiO6 octahedra tilting and hole doping in La3Ni2O7-type nickelates shifts the superconducting phase boundary and produces up to three nonsuperconducting anomalies suggestive of density-wave orders.
citing papers explorer
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Anomalous Behavior of the Ni$^{1+}$ moment and interstitial band in bi-infinite-layered La$_3$Ni$_2$O$_5$F
DFT study identifies atom-unrelated interstitial E* band providing self-doping to Ni1.09+ in La3Ni2O5F, yielding anomalous magnetic behavior with no transition due to 2D fluctuations.
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Controlling the Band Filling and the Band Width in Nickelate Superconductors
High-pressure control of NiO6 octahedra tilting and hole doping in La3Ni2O7-type nickelates shifts the superconducting phase boundary and produces up to three nonsuperconducting anomalies suggestive of density-wave orders.