We present results of the combined study of the magnetic properties of Li2RuO3 by means of nuclear magnetic resonance (NMR) spectroscopy and theoretical dynamical mean-field theory (LDA+DMFT) calculations. The NMR data clearly show the onset of a thermal activation process in the high temperature region, T > 560 K, which is tentatively ascribed to the formation of the valence bond liquid. The LDA+DMFT calculations demonstrate that the magnetic response at these temperatures is mostly due to the xz/yz orbitals, while the xy orbitals of Ru still form molecular orbitals. Thus, Ru ions are in the orbital-selective state in the high temperature phase of Li2RuO3. © 2017 Pleiades Publishing, Inc.1221sci
The origin of spin-dimerization and concomitant spin-gap opening in the triclinic phase of poly- and...
We measured the temperature dependence of low-frequency Raman spectra in Li2RuO3 and observed multip...
Nanocrystalline RuO2 was electrochemically lithiated using a 6Li-enriched negative electrode, and se...
Li2RuO3 (LRO) forms a valence bond crystal at room temperature. It undergoes a high temperature phas...
The electronic structure of Li2RuO3 was investigated using x-ray emission and absorption spectroscop...
The honeycomb lattice material Li2RuO3 undergoes a dimerization of Ru4+ cations on cooling below 270...
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Li2RuO3 with a honeycomb structure undergoes a drastic transition from a regular honeycomb lattice w...
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The origin of spin-dimerization and concomitant spin-gap opening in the triclinic phase of poly- and...
We measured the temperature dependence of low-frequency Raman spectra in Li2RuO3 and observed multip...
Nanocrystalline RuO2 was electrochemically lithiated using a 6Li-enriched negative electrode, and se...
Li2RuO3 (LRO) forms a valence bond crystal at room temperature. It undergoes a high temperature phas...
The electronic structure of Li2RuO3 was investigated using x-ray emission and absorption spectroscop...
The honeycomb lattice material Li2RuO3 undergoes a dimerization of Ru4+ cations on cooling below 270...
Li-excess lithium-ion battery cathode materials and the role that reversible anionic redox may play ...
The S = 3/2, quasi-one-dimensional (1D) zig-zag chain Heisenberg antiferromagnet Li3RuO4 has been in...
The present study summarizes magnetic and Mossbauer measurements on ceramic Li2MO3 M = Mn. Ru and Ir...
We report magnetization, heat capacity, 7Li nuclear magnetic resonance (NMR) and muon-spin rotation ...
Spin-echo nuclear magnetic and quadrupole resonance (NMR/NQR) studies, along with complementary x-ra...
We have used zero-field muon-spin rotation to study the local magnetic properties of SrRuO3, Y2Ru2O7...
We carried out a LDA+DMFT study of perovskite ruthenates SrRuO<SUB>3</SUB> and CaRuO<SUB>3</SUB>, co...
Li2RuO3 with a honeycomb structure undergoes a drastic transition from a regular honeycomb lattice w...
The magnetic and electronic properties of Eu2Ru2O7 are discussed in terms of the local ruthenium and...
The origin of spin-dimerization and concomitant spin-gap opening in the triclinic phase of poly- and...
We measured the temperature dependence of low-frequency Raman spectra in Li2RuO3 and observed multip...
Nanocrystalline RuO2 was electrochemically lithiated using a 6Li-enriched negative electrode, and se...