Sentence examples for functional electrolyte from inspiring English sources

Exact(4)

A theoretical description of the proposed model is presented and applied to the design of very simple functional electrolyte configurations.

Ceria-based composites have been previously developed as functional electrolytes for high performance of solid oxide fuel cells that require high functional electrolyte materials that can provide high ion conductivity for sufficient current output.

This work describes for the first time a functional electrolyte system setup for anionic isotachophoresis (ITP) with electrospray-ionization mass-spectrometric (ESI-MS) detection in the neutral to medium-alkaline pH range.

The synergistic effects of LiB(C2O4 2 (LiBOB), LiF2B(C2O4) (LiDFOB), triphenylamine (Ph3N), and 1,4-benzodiozane-6,7-diol 1,4-benzodiozane-6,7-diol 1,4-benzodiozane-6,7-diol 1,4-benzodiozane-6,7-diolls is examined.

Similar(56)

Recently, extensive studies on the ceria-based two-phase composites as functional electrolytes have created excellent 300 600 °C fuel cell technology.

The use of pKa values is a simple, but highly effective methodology to select appropriate electrolyte components and thus helps to identify functional electrolytes beyond the typical trial and error approach or time-consuming theoretical calculations.

R s is the solvent resistance, R f the film resistance, R ct the charge transfer resistance, CPE1 the film capacitance, CPE2 the double layer (the functional and electrolyte layer) capacitance, and W the Warburg diffusion impedance.

Nickel/yttria-stabilized zirconia (Ni/YSZ), nickel/scandia-stabilized zirconia (Ni/ScSZ) cermets, ScSZ, and Ce0.9Gd0.1O1.9 (CGO) were used as materials of anode substrate, anode functional layer, electrolyte and interlayer.

The extent of irreversible deactivation of Pt towards hydrogen oxidation reaction (HOR) due to sulfur adsorption and subsequent electrochemical oxidation is quantified in a functional polymer electrolyte membrane (PEM) fuel cell.

Three kinds of functional organosilicons electrolyte additives, i. e. octamethylcyclotetrasiloxane (D4), octamethylcyclotetrasiloxane (OMCTS) and 2,4,6,8-tetramethyl-2,4,6,8-tetravinylcyclotetra- siloxane (ViD4), are firstly used to produce high-performance LiNi0.6Co0.2Mn0.2O2 cathode for rechargeable Lithium-ion batteries (NCM622/Li half-cell) at a high potential.

The anode functional layer and electrolyte were dip-coated on the support.

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