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5 results for “solid-state electrolytes”
Datasets to Poly(ethylene oxide)-based Electrolytes for Solid-State Potassium Metal Batteries with Prussian Blue Positive Electrode
<p>This dataset provides the raw data to the manuscript</p> <p>"<strong>Poly(ethylene oxide)-based Electrolytes for Solid-State Potassium Metal Batteries with Prussian Blue Positive Electrode"</strong></p> <p>published in ACS Appl. Polym. Mater. (DOI: <a href="https://doi.org/10.1021/acsapm.2c00014">10.1021/acsapm.2c00014</a> ) / <a href="https://doi.org/10.1021/acsapm.2c00014">https://doi.org/10.1021/acsapm.2c00014</a></p> <p>Specifically, the following measurements are provided:</p> <p>Electrochemical cell tests of liquid and solid electrolytes ("CYCLING_" & Ratecapability test)</p> <p>Solid electrolyte characterization:</p> <p>Differential Scanning Calorimetry ("DSC_")</p> <p>Electrochemical Impedance Spectroscopy ("EIS_")</p> <p>Rheological measurements ("RHEO_")</p> <p>X-ray diffraction data ("XRD_")</p>
Mechanical behaviour of inorganic solid-state batteries: Can we model the ionic mobility in the electrolyte with Nernst-Einstein's relation?
<p>(Top left) Governing forces given by Nernst-Einstein’s relationship, where the forward electric force is in a dynamic equilibrium with the backward viscous force. (Bottom left) The dynamic viscosity is a measure of the fluid resistance to flow. (Right) For brittle inorganic solid electrolytes characterised by cracks formation and electrolyte fracture, the stress-strain relationship before the electrolyte fracture can be approximated as linear.</p>
Realisation of solid-state electrochromic devices based on gel electrolyte
<p><strong>Background:</strong> Since the last decade, there has been much interest in solid polymer electrolyte (SPE) to address the issues of electrolyte leakage and evaporation in electrochromic devices (ECD). ECD is a state-of-the-art technology having the ability to change from transparent state to opaque state under the influence of a small applied voltage for energy saving applications.</p> <p><strong>Methods:</strong> In this work, tungsten oxide (WO<sub>3</sub>) films were fabricated via the sol-gel spin-coating method. Subsequently, ECDs were assembled based on SPE and liquid polymer electrolyte (LPE) respectively, using indium doped tin oxide (ITO) coated glass as conducting electrodes and WO<sub>3</sub> films as working electrode.</p> <p><strong>Results:</strong> Cyclic voltammetry (CV) results revealed reduced ionic conductivity of conducting ions in SPE based ECD (SECD) owing to increased viscosity by addition of PMMA. However, lesser time was required for the colouration process. LPE based ECD (LECD) showed higher colouration efficiency (CE) compared to its SECD counterpart. This is attributed to its larger optical modulation.</p> <p><strong>Conclusions:</strong> This work presents a comparison between the performance of LECD and SECD in terms of electrochromic (EC) and optical properties. They were analyzed through CV, chronoamperometry (CA) and ultraviolet-visible (UV-Vis) spectrophotometer. Furthermore, this work provides an insight on the employment of solid-state electrolytes in ECDs in view of the persistent leakage and evaporation problems in ECD implementation.</p>
Realisation of solid-state electrochromic devices based on gel electrolyte
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Datasets to From lithium to potassium: Comparison of cations in poly(ethylene oxide)-based block copolymer electrolytes for solid-state alkali metal batteries
<p>This dataset provides the raw data to the manuscript</p> <p><strong>"From lithium to potassium: Comparison of cations in poly(ethylene oxide)-based block copolymer electrolytes for solid-state alkali metal batteries"</strong></p> <p>published in Electrochimica Acta, Vol. 454, 20 June 2023. <a href="https://doi.org/10.1016/j.electacta.2023.142421">https://doi.org/10.1016/j.electacta.2023.142421</a></p> <p> </p> <p>Specifically, the following measurements are provided:</p> <p>Solid polymer electrolytes characterization:</p> <p>Differential Scanning Calorimetry ("DSC_")</p> <p>Rheological measurements ("RHEO_")</p> <p>Electrochemical Impedance Spectroscopy ("EIS_")</p> <p>Transference Number Measurements: Bruce-Vincent Method ("T+_EIS_ & T+_CA_")</p> <p>Pulsed Field Gradient NMR ("PFG_NMR_")</p> <p>Plating and Stripping Experiments ("PlatingStripping_")</p> <p> </p> <p>Prussian Blue analogue (PBA) characterization:</p> <p>Thermogravimetric analysis ("TGA_")</p> <p> </p> <p>Electrochemical cell tests of liquid and solid polymer electrolytes ("CYCLING_")</p>
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OpenNeuro
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