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The catalyst electrode with PtNWs grown at 40 °C shows the best power performance.
Rf was calculated from the ratio of the double-layer capacitance C of the catalyst electrode and Cu foil electrode (CCu foil = 29 μF), that is, Rf = C/CCu foil.
To optimize the sensitivity level of Pt dot catalyst electrode, the electrodes were made in H-grid shape.
Accordingly, the robust design of Cu-rGO catalyst electrode can serve as a feasible candidate for non-enzymatic glucose biosensor.
In this work, the methanol sensors were fabricated by using Pt dot catalyst electrode and the level of electrochemical response was analyzed.
Also, the catalyst electrode demonstrates favorable reaction kinetics (Tafel slope, 105 mV dec−1) and strong durability (seldom performance degradation after 12 h or 1000 cycles).
Similar(32)
Duan, J., Chen, S., Jaroniec, M. & Qiao, S. Z. Porous C3N4 nanolayers@N-graphene films as catalyst electrodes for highly efficient hydrogen evolution.
Fuel cells utilizing 0.46 mg/cm2 supported catalyst electrodes performed as well as unsupported catalyst electrodes with 2 mg/cm2.
The PEFC with modified carbon-supported platinum catalyst electrodes exhibits 40% enhancement in its power density as compared to the one with unmodified carbon-supported platinum catalyst electrodes.
The Pt/Ru catalyst electrodes were used in methanol oxidation measurements.
In order to design Ru-based oxide-coated catalyst electrodes with a large surface area, the following five methods were evaluated and the electrochemically active surface area of the electrodes were compared.
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