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Showing 1 to 12 of 12 for “"Transference Numbers"”.

  1. Methodology for determining electronic transference numbers in molten sulfide melts

    … through, for example, decreasing the electronic transference number of the electrolyte. This thesis compares two methods of determining the electronic transference number in Cu2S - barium sulfide (BaS) electrolytes to determine whether one or both methods are wellsuited for use with these …

    mit Repository record for Methodology for determining electronic transference numbers in molten sulfide melts (opens in a new tab)

  2. HIGH MODULI POLYMER GELS AND NON-AQUEOUS ELECTROLYTES WITH MUTLI-IONIC LITHIUM SALTS HAVING HIGH THERMAL STABILITY AND LITHIUM ION TRANSFERENCE NUMBERS

    … they have very low conductivity and lithium ion transference number (tLi+)values. Transference number of an ion by definition is the fraction of current carried by that particular ion, here in the case of LIBs is Li+, out of the total current carried by all the ions in the solution. Ideally a …

    temple Repository record for HIGH MODULI POLYMER GELS AND NON-AQUEOUS ELECTROLYTES WITH MUTLI-IONIC LITHIUM SALTS HAVING HIGH THERMAL STABILITY AND LITHIUM ION TRANSFERENCE NUMBERS (opens in a new tab)

  3. MULTI-IONIC LITHIUM SALTS FOR USE IN SOLID POLYMER ELECTROLYTES FOR LITHIUM BATTERIES

    … special packing needs, and have low lithium ion transference numbers (tLi+ = 0.2-0.3). These limitations prevent them from being used in high energy and power applications such as in hybrid electric vehicles (HEVs), plug in electric vehicles (EVs) and energy storage on the grid. Solid polymer …

    temple Repository record for MULTI-IONIC LITHIUM SALTS FOR USE IN SOLID POLYMER ELECTROLYTES FOR LITHIUM BATTERIES (opens in a new tab)

  4. Calcium and strontium ionic flux of lipid bilayers

    … and from these membrane specific resistance, transference number and ionic flux were calculated for each membrane in the presence of each ion. The electrical properties of the lecithin membrane in the presence of Na+ were comparable with literature values. The measured potential of the …

    twu Repository record for Calcium and strontium ionic flux of lipid bilayers (opens in a new tab)

  5. STRUCTURAL, ELECTROCHEMICAL AND THERMAL STUDIES OF DIVALENT POLYMER ELECTROLYTES

    … samples had the highest conductivities and transference numbers, although at room temperature, the conductivities were only about 10"^ S cm'’. Conversely, samples containing magnesium salts had lower conductivities, similar to pure PEO. Plasticised samples of PEO30:PCn:ZnX2 (PC=propylene …

    de-montfort Repository record for STRUCTURAL, ELECTROCHEMICAL AND THERMAL STUDIES OF DIVALENT POLYMER ELECTROLYTES (opens in a new tab)

  6. Electrochemical studies in anhydrous formic acid

    … measurements, the measurement of transport numbers and potentiometric titrations. The conductance measurements were made almost entirely by Schlesinger and his co-workers. The conductivities of ammonium, alkali and alkaline earth formates as well as hydrogen chloride solutions in anhydrous …

    cape-town Repository record for Electrochemical studies in anhydrous formic acid (opens in a new tab)

  7. New Solid Polymer Electrolytes for Lithium, Sodium, and Calcium-based Batteries

    … PTHF electrolyte, which could lead to smaller transference numbers in battery settings. These findings elucidated the fundamental influences and correlations of varied polymer ether content to ion coordination and transport, which informed the following polymer design to improve electrolyte …

    syracuse-diss Repository record for New Solid Polymer Electrolytes for Lithium, Sodium, and Calcium-based Batteries (opens in a new tab)