The observation of the insulator–metal transition in EuNiO3under high pressure
Author:
Publisher
IOP Publishing
Subject
Condensed Matter Physics,General Materials Science
Link
http://stacks.iop.org/0953-8984/16/i=20/a=006/pdf
Reference18 articles.
1. Structural, magnetic and electronic properties of perovskites (R = rare earth)
2. Synthesis, crystal structure, and properties of metallic PrNiO3: Comparison with metallic NdNiO3 and semiconducting SmNiO3
3. Systematic study of insulator-metal transitions in perovskites RNiO3 (R=Pr,Nd,Sm,Eu) due to closing of charge-transfer gap
4. Metal−Insulator Transitions, Structural and Microstructural Evolution of RNiO3 (R = Sm, Eu, Gd, Dy, Ho, Y) Perovskites: Evidence for Room-Temperature Charge Disproportionation in Monoclinic HoNiO3 and YNiO3
5. Neutron-diffraction study ofRNiO3(R=La,Pr,Nd,Sm): Electronically induced structural changes across the metal-insulator transition
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1. Preparation of ReNiO3 (Re = Pr, Sm, Eu) and proton conductivity;RSC Advances;2024
2. Landau Diamagnetism and de Haas–van Alphen Oscillations, Formed in Single Crystals of Y3Fe5O12, in Local Nanodimensional-Sized 2D Phase Separation Regions, Located inside Layered Domain Walls at Room Temperature and T = 77 K;Nanomaterials;2023-07-24
3. Similarity of Mechanisms of Formation of Phase Separation Domains in Y3Fe5O12, EuFeO3, YCrO3, Eu2CuO4, and RMn2O5 Multiferroics (Brief Review);JETP Letters;2022-02
4. Effect of chemical and hydrostatic pressures on the structural and mechanical properties of orthorhombic rare-earth RNiO3;Computational Materials Science;2021-09
5. On the lack of monoclinic distortion in the insulating regime of EuNiO3 and GdNiO3 perovskites by high-angular resolution synchrotron X-ray diffraction: a comparison with YNiO3;Dalton Transactions;2021
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