Visualizaciones | |
---|---|
Electrochemical degradation of Naproxen by carbon paper electrodes coated by RGO and Pt | 69 |
junio 2024 | julio 2024 | agosto 2024 | septiembre 2024 | octubre 2024 | noviembre 2024 | diciembre 2024 | |
---|---|---|---|---|---|---|---|
Electrochemical degradation of Naproxen by carbon paper electrodes coated by RGO and Pt | 60 | 7 | 0 | 0 | 0 | 0 | 2 |
Visualizaciones | |
---|---|
Figure 1. Scheme of the CP electrodes surface modification.tif | 15 |
Readme.txt | 12 |
Table 3.Results for EDX characterization and PtC and OC atomic ratios for the different electrodes prior to and after electrolysis.pdf | 10 |
Table 1.Results for EDX characterization and PtC and OC atomic ratios.pdf | 9 |
Table 2.Comparison of reaction parameters with published studies.pdf | 9 |
Figure 9a.CV for the characterization of CP in a 230 ppm naproxen solution.csv | 6 |
Figure 12.Representation of degradation kinetics of NPX at 1.4 V versus losded charge and time.csv | 6 |
Figure 2.Voltammograms for RGO deposition on CP electrode.csv | 5 |
Figure 5b.Synthesis of Pt NPs for 20 scans on CP.csv | 5 |
Figure 9b.CV for the characterization of CP-RGO in a 230 ppm naproxen solution.csv | 5 |
Visualizaciones | |
---|---|
Estados Unidos | 30 |
España | 23 |
Australia | 2 |
China | 2 |
Bangladesh | 1 |
Bulgaria | 1 |
Canadá | 1 |
Chequia | 1 |
Francia | 1 |
Irlanda | 1 |
Visualizaciones | |
---|---|
Valencia | 19 |
Redmond | 9 |
Houston | 6 |
Ashburn | 3 |
Ann Arbor | 2 |
San Francisco | 2 |
Algeciras | 1 |
Andover | 1 |
Boydton | 1 |
Chaoyang | 1 |