Keywords: پیل های سوختی; fuel cells; oxygen reduction reaction; bio-carbon catalyst; nonmetal co-doped carbon flocs; nitrogen species; porous structure;
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Keywords: پیل های سوختی; Fuel cells; Catalyst layer; Pore-scale approach; Stochastic reconstruction;
Keywords: پیل های سوختی; Autothermal diesel reforming; Fuel cells; Auxiliary power unit; Process control
Keywords: پیل های سوختی; Proton exchange membrane; Cross-linking; Click reaction; Fuel cells;
Keywords: پیل های سوختی; Carbon nitride; Nanocomposite membranes; Proton conduction; Methanol permeation; Fuel cells
Keywords: پیل های سوختی; Hydrogen safety; Fuel cells; Helium; Hydrogen leakage; CFD; Correlation
Keywords: پیل های سوختی; Anion exchange membranes; Crosslinked membranes; Poly(arylene ether sulfone)s; Hydroxide conductivity; Ion-conducting channels; Fuel cells;
Keywords: پیل های سوختی; Energy economics; Fuel cells; Commercial buildings; Market analysis; Complementary technologies; Energy storage
Keywords: پیل های سوختی; Fuel cells; Anion exchange membrane; Alkaline stability; Energy barrier; Hofmann Elimination; Nucleophilic substitution;
Keywords: پیل های سوختی; Fuel cells; Graphene oxide membrane; Proton exchange membrane; Proton conductivity; Tubular configuration; Open air cathode;
Keywords: پیل های سوختی; Distribution automation; Energy management; Fuel cells; GA optimization; Home automation; Smart grid
Keywords: پیل های سوختی; Fuel cells; Power generation; Life cycle assessment; Eco-efficiency; Systemic analysis
Keywords: پیل های سوختی; Renewable energy; Sustainable development; Hydrogen fuels; Fuel cells; Electrodes;
Keywords: پیل های سوختی; Fuel cells; Droplet dynamics; Surface tension; Embedded;
Keywords: پیل های سوختی; Sulfonated poly(ether ether ketone); Proton exchange membrane; Carbon nanotubes; Boron phosphate; Fuel cells;
Keywords: پیل های سوختی; Mixed ionic and electronic conductors (MIEC); 3D microstructure; Fuel cells; Permeation membrane; Electrolysis;
Keywords: پیل های سوختی; Data-driven; Ensemble; Fuel cells; PEMFC; Prognostics; Remaining useful life;
Keywords: پیل های سوختی; Catalyst activity; Catalyst characterization; Catalyst deactivation; Autothermal reforming; Commercial diesel fuel; Fuel cells;
Keywords: پیل های سوختی; Distributed generation; Microgrids; Model predictive control; Fuel cells
Keywords: پیل های سوختی; Fuel cells; Direct formate fuel cells; Electrocatalytic mechanisms; Electrocatalysts; System designs; Cell performance
Keywords: پیل های سوختی; Quasi-random modeling; Catalyst structure; Stochastic material networks; Carbon spheres; Catalyst effectiveness; Fuel cells;
Keywords: پیل های سوختی; Dealloying; Nanoporous alloy; Methanol electro-oxidation; Oxygen reduction reaction; Fuel cells;
Keywords: پیل های سوختی; Nanoporous nickel phosphate; MWCNTs; Modified CPE; Ethanol electrooxidation; Fuel cells;
Keywords: پیل های سوختی; Fuel cells; Ethylene glycol; Direct ethylene glycol fuel cells; Electrocatalytic oxidation; Electrocatalysts; System designs;
Keywords: پیل های سوختی; Fuel cells; Logistic fuels; Fuel processing; Ships; Maritime application; Emissions;
Keywords: پیل های سوختی; Wind-hydrogen; Dynamic modelling; Experimental validation; Simulation; Renewable energy grid integration; Fuel cells;
Keywords: پیل های سوختی; non-PGM catalysts; Oxygen reduction reaction; ORR; DFT modeling; Fuel cells;
Keywords: پیل های سوختی; Phosphonated copolyimides; Proton exchange membranes; Ionomers; Fuel cells; Ion conductive polymers;
Keywords: پیل های سوختی; Polymer electrolyte membrane; Nafion; Fuel cells; Proton conductivity; Hot-pressing; Ion cluster network morphology; Water;
Keywords: پیل های سوختی; Nano structures; Hybrid materials; Gold nanoparticles; Electrochemical properties; Electronic materials; Chemical synthesis materials; Energy storage; Fuel cells; Oxidation reduction reaction; Alkaline media
Keywords: پیل های سوختی; Formic acid oxidation; Fuel cells; Nanostructured palladium; Phosphide material;
Keywords: پیل های سوختی; Oxygen reduction; Non-precious catalyst; Fuel cells; Polyaniline; Carbon nanotube; In-situ graphene;
Keywords: پیل های سوختی; oscillations; DMFC; methanol; electrocatalysis; fuel cells;
Keywords: پیل های سوختی; Liquid fuels; Fuel processing; Reforming; Hydrogen; Fuel cells;
Keywords: پیل های سوختی; Atomic layer deposition; Fuel cells; Electrocatalysts; Nanomaterials; Catalyst design;
Keywords: پیل های سوختی; Pt alloys; Fuel cells; Nanoparticles; Electrocatalysis; Oxygen reduction reaction;
Keywords: پیل های سوختی; Proton conductor; Electrochemical process; Alkali-proton substitution; FT-IR; Fuel cells;
Keywords: پیل های سوختی; Electrocatalysis; Fuel cells; Membrane; Stabilization; Corrosion
Keywords: پیل های سوختی; Hydrogen; Electrolysis; Fuel cells; Carbon assisted electrolysis; Low emission hydrogen production; Renewables;
Keywords: پیل های سوختی; H3PO4 membrane; Ionomer; Quaternary ammonium; PTFE porous membrane; Fuel cells;
Keywords: پیل های سوختی; Electrocatalyst; Fuel cells; Mesoporous materials; Oxygen reduction reaction.
Keywords: پیل های سوختی; Pd nanoparticles; Amine–borane; Ethanol oxidation; Formic acid oxidation; Fuel cells
Keywords: پیل های سوختی; Fuel cells; Oxygen reduction; Non-precious metal catalyst; Electrocatalysis
Keywords: پیل های سوختی; Ethanol oxidation reaction; Fuel cells; Electrochemistry; Microwave assisted synthesis; Electrocatalysts;
Keywords: پیل های سوختی; Hollow nitrogen-doped carbon; Oxygen reduction reaction; Electrocatalyst; Polyaniline; Fuel cells;
Keywords: پیل های سوختی; Fuel cells; Direct methanol fuel cells; Neat methanol operation; Water starvation;
Keywords: پیل های سوختی; SOFC; Energy; Fuel cells
Keywords: پیل های سوختی; Dipyrrolemethane; Fuel cells; Heteroatom-doped graphene; Nonmetal catalyst; Oxygen reduction;
Keywords: پیل های سوختی; Electrocatalyst; PtAu; Phase-segregation; Fuel cells; Formic acid oxidation;
Keywords: پیل های سوختی; Natural gas; Hydrogen; Hybrids; Fuel cells; Costs; Markets; Transitions; Q2; Q3; Q4;