Mismatch in cation size causes rapid anion dynamics in solid electrolytes: the role of the Arrhenius pre-factor

被引:32
作者
Breuer, Stefan [1 ,2 ]
Wilkening, Martin [1 ,2 ,3 ]
机构
[1] Graz Univ Technol NAWI Graz, Christian Doppler Lab Lithium Batteries, Stremayrgasse 9, A-8010 Graz, Austria
[2] Graz Univ Technol NAWI Graz, Inst Chem & Technol Mat, Stremayrgasse 9, A-8010 Graz, Austria
[3] ALISTORE ERI European Res Inst, 33 Rue St Leu, F-80039 Amiens, France
关键词
NUCLEAR-SPIN RELAXATION; CONDUCTIVITY-RELAXATION; IONIC-CONDUCTIVITY; MECHANOCHEMICAL SYNTHESIS; MECHANICAL TREATMENT; NMR RELAXATION; COUPLING MODEL; NANOCRYSTALLINE; COMPOSITES; DIFFUSION;
D O I
10.1039/c7dt04487a
中图分类号
O61 [无机化学];
学科分类号
070301 [无机化学];
摘要
Crystalline ion conductors exhibiting fast ion dynamics are of utmost importance for the development of, e.g., sensors or rechargeable batteries. In some layer-structured or nanostructured compounds fluorine ions participate in remarkably fast self-diffusion processes. As has been shown earlier, F ion dynamics in nanocrystalline, defect-rich BaF2 is much higher than that in the coarse-grained counterpart BaF2. The thermally metastable fluoride (Ba,Ca)F-2, which can be prepared by joint high-energy ball milling of the binary fluorides, exhibits even better ion transport properties. While long-range ion dynamics has been studied recently, less information is known about local ion hopping processes to which F-19 nuclear magnetic resonance (NMR) spin-lattice relaxation is sensitive. The present paper aims at understanding ion dynamics in metastable, nanocrystalline (Ba,Ca)F-2 by correlating short-range ion hopping with long-range transport properties. Variable-temperature NMR line shapes clearly indicate fast and slow F spin reservoirs. Surprisingly, from an atomic-scale point of view increased ion dynamics at intermediate values of composition is reflected by increased absolute spin-lattice relaxation rates rather than by a distinct minimum in activation energy. Hence, the pre-factor of the underlying Arrhenius relation, which is determined by the number of mobile spins, the attempt frequency and entropy effects, is identified as the parameter that directly enhances short-range ion dynamics in metastable (Ba,Ca)F-2. Concerted ion migration could also play an important role to explain the anomalies seen in NMR spin-lattice relaxation.
引用
收藏
页码:4105 / 4117
页数:13
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