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Cl- ions diffuse out leading to nucleation of Ti precursor on the surface of nanofibers.
We first investigate the effect of residual solvent in the cobalt precursor on the final morphology of Co3O4.
This problem can be overcome by depositing a fluorocarbon film (using C4F8 as precursor) on the sidewall during etching [34].
Initial suspensions were prepared by nano-scale adhesion of the alumina precursor on the surface of submicronic zirconia particles.
The effect of the chemical structure of a silicone precursor on the morphology of formed microstructures was considered.
The preparation strategy involves the electrodeposition of nickel hydroxide precursor on Ni foam and subsequent low-temperature annealing process.
Tepavcevic et al. [15] polymerized 2,5-diiodothiophene (DIT) as monomer precursor on the surface of TiO2 nanotubes photochemically by ultraviolet irradiation.
Ion exchange procedure was utilized to imprint silver ions (Ag+) from silver nitrate solution as silver precursor on the modified clinoptilolite zeolite structure to attain Ag-clinoptilolite zeolite.
To study the effects of Cu concentration and precursor on the Cu-doped ZnO nanorods, five samples (S1 to S5) were prepared.
The main focus has been put on the effect of the copper precursor on the morphology, structural, transmittance, and photoluminescence properties of the synthesized ZnO nanorods.
To understand the effects of cobalt precursor on electrochemical performance of the corresponding Co-PPy-TsOH/C catalysts, many physicochemical techniques have been employed in this work.
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