Li self-diffusion in Li 2O-deficient LiNbO 3 single crystals is investigated in the temperature range between 423 and 773 K (150-500 °C) by secondary ion mass spectrometry. A thin layer of ion-beam sputtered isotope enriched 6LiNbO 3 was used as a tracer source, which allows one to study pure isotope interdiffusion. The diffusivities can be described by the Arrhenius law with an activation enthalpy of (1.33 ± 0.03) eV, which is in acceptable agreement with the migration energy of a single Li vacancy as determined by ab initio calculations given in the literature. Charge diffusivities as derived from impedance spectroscopy measurements on the same type of samples are identical to the tracer diffusivities within error limits. No indication of...
AbstractDiffusion of Li+ ionsin solidsisa basic principle behindthe operationof Li-ion batteries. Su...
A large experimental body of literature on lithium niobate, a technologically important ferroelectri...
Lithium aluminum oxide (γ-LiAlO2) has been discussed and used for various applications, e.g., as ele...
The self-diffusion of lithium in congruent LiNbO3 single crystals was investigated at low temperatur...
We investigated lithium self-diffusion in amorphous lithium niobate layers between 298 and 423 K. Fo...
We investigated lithium self-diffusion in amorphous lithium aluminate (LiAlO2) layers between room t...
Here, we report on slow Li self-diffusion in lithium containing metal oxide compounds with special e...
Lithium-ion diffusion mechanisms in the complex spinel Li2NiGe3O8 have been investigated using solid...
The changes in optical properties of bulk LiNbO3 crystals were investigated depending on the diffusi...
Various material and functional properties have been measured in lithium niobate crystals (LiNbO3) w...
This article reports on Li self-diffusion in lithium containing metal oxide compounds. Case studies ...
The surface layer of LiNbO3 congruent crystals was studied at room temperature and the 300–1000 °C t...
Lithium-ion diffusion mechanisms in the complex spinel Li2NiGe3O8 have been investigated using solid...
High temperature properties such as electrical conductivity (σ) and resonance behaviour of stoichiom...
Long-range Li diffusion parameters of amorphous LiNbO3 are probed by 7Li two-time spin-alignment ech...
AbstractDiffusion of Li+ ionsin solidsisa basic principle behindthe operationof Li-ion batteries. Su...
A large experimental body of literature on lithium niobate, a technologically important ferroelectri...
Lithium aluminum oxide (γ-LiAlO2) has been discussed and used for various applications, e.g., as ele...
The self-diffusion of lithium in congruent LiNbO3 single crystals was investigated at low temperatur...
We investigated lithium self-diffusion in amorphous lithium niobate layers between 298 and 423 K. Fo...
We investigated lithium self-diffusion in amorphous lithium aluminate (LiAlO2) layers between room t...
Here, we report on slow Li self-diffusion in lithium containing metal oxide compounds with special e...
Lithium-ion diffusion mechanisms in the complex spinel Li2NiGe3O8 have been investigated using solid...
The changes in optical properties of bulk LiNbO3 crystals were investigated depending on the diffusi...
Various material and functional properties have been measured in lithium niobate crystals (LiNbO3) w...
This article reports on Li self-diffusion in lithium containing metal oxide compounds. Case studies ...
The surface layer of LiNbO3 congruent crystals was studied at room temperature and the 300–1000 °C t...
Lithium-ion diffusion mechanisms in the complex spinel Li2NiGe3O8 have been investigated using solid...
High temperature properties such as electrical conductivity (σ) and resonance behaviour of stoichiom...
Long-range Li diffusion parameters of amorphous LiNbO3 are probed by 7Li two-time spin-alignment ech...
AbstractDiffusion of Li+ ionsin solidsisa basic principle behindthe operationof Li-ion batteries. Su...
A large experimental body of literature on lithium niobate, a technologically important ferroelectri...
Lithium aluminum oxide (γ-LiAlO2) has been discussed and used for various applications, e.g., as ele...