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Design and Optimization of a Natural GraphiteIron Phosphate Paul A Kohl Georgia Institute of Technology
3MethoxypropionitrileBased Novel Electrolytes for HighPower
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acid adsorption alloy annealing anode atoms battery calixarene capacitors capacity carbon catalyst layer cathode cell charge Chem chemical clusters coating composition concentration conductivity constant copper crystal current density curves cycle decrease dielectric diffraction diffusion discharge dissolution elec electrical Electrochemical Society electrode electrodeposits electrolyte energy equation etching experimental Figure films deposited flow rate formation function glycine graphite growth higher increase interface ionic ions Li-ion limiting current lithium mAh/g material measured membrane mesoporous silica metal methanol Nafion nucleation observed obtained overpotential oxide oxygen parameters particles passivation peak performance phase phosphor Phys plots polishing porosity porous potential potentiostatic precursor profiles pull rate ratio reaction redox reduced sample shown in Fig shows silica silicon simulation slurry solid solution solvent specific spectra spinel structure substrate surface temperature thermal thickness tion values voltage wafer XRD patterns zeta potential