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The anodization process was carried out using an electrolyte solution composed of hydrofluoric acid (48 wt% HF) and ethanol (99.9%%) in a volumetric ratio of 1 1.
PS monolayers were prepared by wet electrochemical etching of a silicon wafer using an electrolyte solution composed of HF (48%), ethanol (99.9%), and glycerol (98%) in a volumetric ratio of 3 7 1.
In both cases, it was found that the higher activity was obtained with the films annealed at 500 °C and using an electrolyte solution 0.3 M of KOH and 120 ppm of CN−.
The deposition of zinc zinc phosphate composite coatings was carried out under galvanostatic conditions using an electrolyte solution containing 5 g/l of ZnO and 12 ml/l of o-phosphoric acid (85%), maintained at 27 ± 1 °C and two graphite disc anodes, placed on the two sides of the Al cathode.
Sekine et al. deposited a carboxylated PEDOT in nanodots onto the surface of indium tin oxide (ITO -coated glass usITO -coatedtrolyte solution and various voltaglass
Anodic oxidation was performed using an electrolyte solution that contains glycerol, 20 wt% H2O and 1 wt% NH4F at 20 mA/cm, pulsed at 20 V for 60 min.
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A 0.1 mol L−1phosphate buffer (pH 7.0) was used as an electrolyte solution.
No catalytic current induced by BOD was observed when neat ILs were used as an electrolyte solution.
A solution of 0.1 M NaSO4 was used as an electrolyte solution for the measurement, and a 150-W Xe arc lamp was utilized as the light source for the photoelectrochemical (PEC) measurement.
A solution of 0.1 m tetrabutylammonium hexafluorophosphate (TBAPF6, ≥99 %, Fluka Analytical) in acetonitrile (Roth) was used as an electrolyte solution.
An electric double-layer capacitor (EDLC) was tested using load tests involving charging/discharging at 60 °C for 17 h using an electrolyte consisting of a solution of 1 mol l−1 of tetraethylammonium tetrafluoroborate (TEA·BF4) in sulfolane (SL) in order to examine the deterioration of the properties of the EDLC, including its capacitance.
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