Keywords: ریز ساختار الکترودهای; Lithium-ion battery; Virtual materials design; Electrode microstructure; Stochastic microstructure modeling; Energy cell; Power cell;
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Keywords: ریز ساختار الکترودهای; Lattice Boltzmann method; Lithium-ion battery; Electrode microstructure; Electrode particles; Discharge process;
Hybrid approach combining multiple characterization techniques and simulations for microstructural analysis of proton exchange membrane fuel cell electrodes
Keywords: ریز ساختار الکترودهای; PEMFC electrode; Catalyst layer; Electrode microstructure; X-ray computed tomography; Effective transport properties; Ionomer film thickness; Ionomer size distribution;
Keywords: ریز ساختار الکترودهای; Li ion battery; electrode microstructure; inhomogeneity; polarization
Keywords: ریز ساختار الکترودهای; Alkaline anion exchange membrane fuel cell; Dispersion solvent; Electrode microstructure; Ionomer content; Three phase boundary
Keywords: ریز ساختار الکترودهای; LSM; strontium-doped lanthanum manganite; SOFC; solid oxide fuel cell; TPB; three-phase boundary; YSZ; yttria-stabilized zirconia; Solid oxide fuel cell (SOFC); Cell-level modeling; Numerical reconstruction; Electrode microstructure; Anode-supported Jüli
Lattice Boltzmann simulation of ion and electron transport during the discharge process in a randomly reconstructed porous electrode of a lithium-ion battery
Keywords: ریز ساختار الکترودهای; Lithium-ion battery; Electrode microstructure; Lattice Boltzmann method; Discharge process;
Effect of powder morphology on the microstructural characteristics of La0.6Sr0.4Co0.2Fe0.8O3 cathode: A Kinetic Monte Carlo investigation
Keywords: ریز ساختار الکترودهای; Solid oxide fuel cells; Powder morphology; Electrode microstructure; Sintering; Kinetic Monte Carlo;
Microstructure reconstruction and characterization of PEMFC electrodes
Keywords: ریز ساختار الکترودهای; Proton exchange membrane fuel cell; Electrode microstructure; Microstructure reconstruction; Microstructure characterization; Tortuosity
Composite electrodes for ceria-carbonate intermediate temperature electrolytes
Keywords: ریز ساختار الکترودهای; Composite electrodes; Ceria-based composite electrolytes; Electrode microstructure; Chemical stability; Intermediate temperature fuel cells; Electrode performance
Two-dimensional charge transfer and space charge effects in extended surface solid oxide fuel cell electrodes
Keywords: ریز ساختار الکترودهای; Solid oxide fuel cell; Heterogeneous functional materials; Transport phenomena; Electrode microstructure
Three-dimensional particle-resolved models of Li-ion batteries to assist the evaluation of empirical parameters in one-dimensional models
Keywords: ریز ساختار الکترودهای; Li-ion battery; Electrode microstructure; Three-dimensional models; Effective properties
Pore-scale analysis of effects of electrode morphology and electrolyte flow conditions on performance of vanadium redox flow batteries
Keywords: ریز ساختار الکترودهای; Vanadium redox flow battery; Lattice Boltzmann method; Pore-scale modeling; X-ray computed tomography; Electrode microstructure; Battery performance;
Analytical investigations of varying cross section microstructures on charge transfer in solid oxide fuel cell electrodes
Keywords: ریز ساختار الکترودهای; Solid oxide fuel cell; Heterogeneous functional materials; Transport phenomena; Electrode microstructure;
Three-phase boundary length in solid-oxide fuel cells: A mathematical model
Keywords: ریز ساختار الکترودهای; Three-phase boundary; Solid-oxide fuel cell; Composite electrodes; Electrode microstructure
Modeling of an anode-supported Ni-YSZ|Ni-ScSZ|ScSZ| LSM-ScSZ multiple layers SOFC cell: Part II. Simulations and discussion
Keywords: ریز ساختار الکترودهای; Intermediate temperature solid oxide fuel cell; Anode-supported; Modeling; Electrode microstructure
Performance improvement of pasted nickel electrodes with an addition of ball-milled nickel hydroxide powder
Keywords: ریز ساختار الکترودهای; Nickel hydroxide; Normal ball milling; Pasted nickel electrode; Electrochemical performance; Electrode microstructure