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A Ag/AgCl (saturated KCl) reference electrode and a Pt wire counter electrode were used.
All electro analysis was performed in conventional three electrode system using platinum wire counter electrode and Ag/AgCl reference electrode.
A three electrode cell with a saturated calomel reference electrode (SCE), a platinum wire counter electrode and PAniTNC1-modified glassy carbon working electrode was employed.
A standard three-electrode cell with a working electrode (as-prepared photocatalyst), a platinum wire counter electrode, and a standard calomel electrode (SCE) as the reference electrode were used in photoelectric studies.
Photoelectrochemical experiments were carried out using a three-electrode configuration (CH instruments, CHI 660C) with a Pt wire counter electrode, a reference saturated calomel electrode and a working electrode.
The electrochemical cell consists of a working electrode with a 0.25 cm2area, designed specifically for the evaluation of layer thickness, a platinum wire counter electrode and a reference electrode (Ag/AgCl in 3 mol KCl).
Similar(36)
A platinum wire counter-electrode and an Ag/AgCl (3 M NaCl) reference electrode completed the three-electrode arrangement.
All electrochemical experiments were conducted using a three-electrode system which comprised of a printed carbon-AuNP-GOx working electrode, a gold-wire counter electrode and a Ag/AgCl reference electrode.
The electrochemical setup consisted of a polystyrene cell and a classical three-electrode arrangement, including a rotating working electrode, a saturated calomel (SCE) reference electrode, and a Pt-wire counter electrode.
Amperometric biosensors were evaluated using constant potential amperometry in a three-electrode configuration with a Ag/AgCl/KCl (3 M) reference electrode and a Pt-wire counter electrode.
Spectroelectrochemistry was performed in an optically transparent thin-layer electrode (OTTLE cell) 32 with a Pt working electrode, a Pt-wire counter electrode, and a Ag reference electrode.
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