li diffusion coefficients (Bruker Corporation)
97
Structured Review
Bruker Corporation
li diffusion coefficients
Li Diffusion Coefficients, supplied by Bruker Corporation, used in various techniques. Bioz Stars score: 97/100, based on 3085 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/li+diffusion+coefficients/Diffusion/pm40295168-252-19-26
Average 97 stars, based on 3085 article reviews
Li Diffusion Coefficients, supplied by Bruker Corporation, used in various techniques. Bioz Stars score: 97/100, based on 3085 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/li+diffusion+coefficients/Diffusion/pm40295168-252-19-26
Average 97 stars, based on 3085 article reviews
li diffusion coefficients - by Bioz Stars,
2026-10
97/100 stars
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Diffusion-based Assay:Article Title: Enabling Ultralow-Temperature (-70 °C) Lithium-Ion Batteries: Advanced Electrolytes Utilizing Weak-Solvation and Low-Viscosity Nitrile Cosolvent. Article Snippet: Low-temperature performance of lithium-ion batteries (LIBs) has always posed a significant challenge, limiting their wide application in cold environments.. In this work, the high-performance LIBs working under ultralow-temperature conditions, which is achieved by employing the weak-solvation and low-viscosity isobutyronitrile as a cosolvent to tame the affinity between solvents and lithium ions, is reported.. The as-prepared electrolytes exhibit a sufficiently high conductivity (1.152 mS cm−1) at −70 °C. Article Title: Enhanced Ion Mobility in Helmholtz Layer Enabling Ultrathick Electrodes Article Snippet: .. In order to verify the reliability of the Raman and microfluidic measurements, pulsed field gradient NMR (PFG-NMR) measurements of Article Title: Lithium-ion diffusivity in complex hydrides: Pulsed-field-gradient NMR studies of LiLa(BH4)3Cl, Li3(NH2)2I and Li-1-CB9H10 Article Snippet: The bimetallic borohydride-chloride LiLa(BH4)3Cl, the lithium amide-iodide Li3(NH2)2I, and the lithium monocarba-closo-decaborate Li-1-CB9H10 represent complex hydrides showing superionic conductivity at room temperature or slightly above it.. To study the Li-ion diffusivity that is closely related to the ionic conductivity, we have measured the diffusion coefficients of Li cations in these compounds using the pulsed-field-gradient (PFG) spin-echo technique over the temperature range of 298–403 K. The experiments have revealed fast Li diffusivities in all these complex hydrides: at 400 K, the measured diffusion coefficients exceed 10 7 cm2/s for LiLa (BH4)3Cl, 5 × 10 8 cm2/s for Li3(NH2)2I, and 10 6 cm2/s for Li-1-CB9H10.. For LiLa(BH4)3Cl and Li3(NH2)2I, the diffusion coefficients are found to follow the Arrhenius behavior over the entire temperature ranges studied with the activation energies of 268(6) meV and 224(6) meV, respectively. Article Title: Enhanced Ion Mobility in Helmholtz Layer Enabling Ultrathick Electrodes. Article Snippet: .. In order to verify the reliability of the Raman and microfluidic measurements, pulsed field gradient NMR (PFG-NMR) measurements of Nuclear Magnetic Resonance:Article Title: Enabling Ultralow-Temperature (-70 °C) Lithium-Ion Batteries: Advanced Electrolytes Utilizing Weak-Solvation and Low-Viscosity Nitrile Cosolvent. Article Snippet: Low-temperature performance of lithium-ion batteries (LIBs) has always posed a significant challenge, limiting their wide application in cold environments.. In this work, the high-performance LIBs working under ultralow-temperature conditions, which is achieved by employing the weak-solvation and low-viscosity isobutyronitrile as a cosolvent to tame the affinity between solvents and lithium ions, is reported.. The as-prepared electrolytes exhibit a sufficiently high conductivity (1.152 mS cm−1) at −70 °C. Article Title: Enhanced Ion Mobility in Helmholtz Layer Enabling Ultrathick Electrodes Article Snippet: .. In order to verify the reliability of the Raman and microfluidic measurements, pulsed field gradient NMR (PFG-NMR) measurements of Article Title: Lithium-ion diffusivity in complex hydrides: Pulsed-field-gradient NMR studies of LiLa(BH4)3Cl, Li3(NH2)2I and Li-1-CB9H10 Article Snippet: The bimetallic borohydride-chloride LiLa(BH4)3Cl, the lithium amide-iodide Li3(NH2)2I, and the lithium monocarba-closo-decaborate Li-1-CB9H10 represent complex hydrides showing superionic conductivity at room temperature or slightly above it.. To study the Li-ion diffusivity that is closely related to the ionic conductivity, we have measured the diffusion coefficients of Li cations in these compounds using the pulsed-field-gradient (PFG) spin-echo technique over the temperature range of 298–403 K. The experiments have revealed fast Li diffusivities in all these complex hydrides: at 400 K, the measured diffusion coefficients exceed 10 7 cm2/s for LiLa (BH4)3Cl, 5 × 10 8 cm2/s for Li3(NH2)2I, and 10 6 cm2/s for Li-1-CB9H10.. For LiLa(BH4)3Cl and Li3(NH2)2I, the diffusion coefficients are found to follow the Arrhenius behavior over the entire temperature ranges studied with the activation energies of 268(6) meV and 224(6) meV, respectively. Article Title: Enhanced Ion Mobility in Helmholtz Layer Enabling Ultrathick Electrodes. Article Snippet: .. In order to verify the reliability of the Raman and microfluidic measurements, pulsed field gradient NMR (PFG-NMR) measurements of other:Article Title: Shape-Conformable, Eco-Friendly Cellulose Aerogels as High-Performance Battery Separators Article Snippet: The ubiquity of portable electronics underlines the importance of high-performance flexible metal-ion batteries and the necessity of their development.. Considering their ecological footprint, the application of eco-friendly recyclable battery components has become the greatest challenge and the focal point of research.. However, less attention has been devoted to the development of shapeconformable separators with minimal impact on the battery performance and the environment. |