Direct Observation of the Chemical Transformations in BiVO4 Photoanodes upon Prolonged Light-Aging Treatments
<p># Dataset of “ Direct Observation of the Chemical Transformations in BiVO4 Photoanodes upon Prolonged Light-Aging Treatments”</p> <p>-------</p> <p>## GENERAL INFORMATION<br>----------------------</p> <p>1. Dataset title: “Direct Observation of the Chemical Transformations in BiVO4 Photoanodes upon Prolonged Light-Aging Treatments”</p> <p>2. Authorship: <br> Name: Ramón Arcas <br> Institution: Institute of Advanced Materials (INAM), Universitat Jaume I, 12006 Castelló, Spain<br> ORCID: 0000-0001-5813-2768</p> <p> Name: Drialys Cardenas-Morcoso <br> Institution:Material Research and Technology (MRT) Department Luxembourg Institute of Science and Technology (LIST) 4422 Belvaux, Luxembourg<br> ORCID: 0000-0001-9916-4811<br> </p> <p> Name: Maria Chiara Spadaro <br> Institution: Catalan Institute of Nanoscience and Nanotechnology (ICN2) and BIST Campus UAB, Bellaterra 08193 Barcelona, Spain;<br> ORCID: 0000-0002-6540-0377</p> <p> Name: Miguel Garcia-Tecedor<br> Institution: Photoactivated Processes Unit, IMDEA Energy Institute, Parque Tecnológico de Móstoles, 28935 Móstoles, Madrid, Spain;<br> ORCID: 0000-0002-9664-4665</p> <p> Name: Camilo A. Mesa<br> Institution: Institute of Advanced Materials (INAM), Universitat Jaume I, 12006 Castelló, Spain;<br> ORCID: 0000-0002-8450-2563</p> <p> Name: Jordi Albiol<br> Institution: Advanced Electron Nanoscopy (GAeN) ICREA 08010 Barcelona, Catalonia, Spain<br> ORCID: 0000-0002-0695-1726</p> <p> Name: Francisco Fabregat Santiago <br> Institution: Institute of Advanced Materials (INAM), Universitat Jaume I, 12006 Castelló, Spain<br> ORCID: 0000-0002-7503-1245</p> <p> Name: Sixto Giménez<br> Institution: Institute of Advanced Materials (INAM), Universitat Jaume I, 12006 Castelló, Spain<br> Email: <sjulia@uji.es> <br> ORCID: 0000-0002-4522-3174</p> <p> Name: Elena Más-Marzá<br> Institution: Institute of Advanced Materials (INAM), Universitat Jaume I, 12006 Castelló, Spain<br> Email: <emas@uji.es><br> ORCID: 0000-0002-2308-0635<br> </p> <p> <br>## FILE DESCRIPTION<br>—————————<br>### Figure 1<br>-Fig1.txt : Cyclic voltammograms of Reference (black), 1LA–BiVO4 (red) and 3LA–BiVO4 (green) photoanodes measured at 20 mV s 1 in 0.1 M benzyl alcohol in acetonitrile solution with 0.1 M tetrabutylammonium perchlorate (TBAClO4) in the dark (solid lines) and under illumination (100 mW cm 2) [dashed lines].</p> <p>### Figure 2<br>-Fig2d.txt : Raman spectra of Zone A. <br>_fig2e.txt : Raman spectra of Zone B.</p> <p>### Figure 4<br>-Fig4a.txt : Nyquist plot of Reference sample and selected equivalent circuit to fit the experimental data of the Reference and LA samples.<br>-Fig4b.txt : Surface capacitance (Cs), charge transfer resistance (Rct), and photocurrent (J) of Reference BiVO4.<br>-Fig4c.txt : Density of surface states as a function of applied potential. Reference (Black), 1LA–BiVO4 (Red) and 3LA–BiVO4 (Green).</p> <p>### Figure 5<br>-Fig5a.txt : Infrared (IR)-chopped chronoamperometry measurements of Reference (Black) and 3LA-BiVO4 (green).</p> <p>### Figure S1<br>-FigS1.txt : Cyclic voltammetry peak of Ferrocene/Ferrocenium (Fc/Fc+). 1.9 mM of ferrocene was used to calibrate the applied voltage to the normal hydrogen electrode (NHE). Conditions: 100 mM of benzyl alcohol, in 0.1 M TBAClO4 in CH3CN, using BiVO4 as WE, Pt film as CE, and Ag/AgNO3 as RE.</p> <p>### Figure S2<br>-FigS2.txt : CV of Reference (black) and 1LA-BiVO4 (red) measured at scan rates of 20 mV·s-1 in a 0.1M KPi buffered aqueous solution (pH 7.8) in the dark (solid lines) and under 100 mW·cm-2 illumination (dashed lines).</p> <p>### Figure S4<br>-FigS4.txt : XRD spectra for Reference (black), 1LA-BiVO4 (red) and 3LA-BiVO4 (green) photoanodes.</p> <p>### Figure S7<br>-FigS7a.txt : Impedance spectroscopy parameters extracted from fitting the experimental data with the selected equivalent circuit showed in Figure 3. Surface capacitance, Cs. Reference (Black), 1LA-BiVO4 (Red), 3LA-BiVO4 (Green), Reference with electrodeposited BiOx on top<br>(purple). Measurements were performed under illumination at 0.1 M benzyl alcohol oxidation conditions.<br>-FigS7b.txt : Impedance spectroscopy parameters extracted from fitting the experimental data with the selected equivalent circuit showed in Figure 3. Charge Transfer Resistance, Rct. Reference (Black), 1LA-BiVO4 (Red), 3LA-BiVO4 (Green), Reference with electrodeposited BiOx on top<br>(purple). Measurements were performed under illumination at 0.1 M benzyl alcohol oxidation conditions.<br>-FigS7c.txt : Impedance spectroscopy parameters extracted from fitting the experimental data with the selected equivalent circuit showed in Figure 3. Bulk Capacitance, Cbulk. Reference (Black), 1LA-BiVO4 (Red), 3LA-BiVO4 (Green), Reference with electrodeposited BiOx on top<br>(purple). Measurements were performed under illumination at 0.1 M benzyl alcohol oxidation conditions.<br>-FigS7d.txt : Impedance spectroscopy parameters extracted from fitting the experimental data with the selected equivalent circuit showed in Figure 3. Bulk Resistance, Rbulk. Reference (Black), 1LA-BiVO4 (Red), 3LA-BiVO4 (Green), Reference with electrodeposited BiOx on top<br>(purple). Measurements were performed under illumination at 0.1 M benzyl alcohol oxidation conditions.</p> <p>### Figure S8<br>-FigS8a.txt : Comparison of Cs, Rct and the J-V as a function of the applied potential for Reference (Black).Measurements were performed under illumination at 0.1 M benzyl alcohol oxidation conditions.<br>-FigS8b.txt : Comparison of Cs, Rct and the J-V as a function of the applied potential for 1LA-BiVO4 (red). Measurements were performed under illumination at 0.1 M benzyl alcohol oxidation conditions.<br>-FigS8b.txt : Comparison of Cs, Rct and the J-V as a function of the applied potential for 3LA-BiVO4 (green). Measurements were performed under illumination at 0.1 M benzyl alcohol oxidation conditions.</p> <p>### Figure S9<br>-FigS9a.txt : Density of surface states as a function of applied potential. 1LA-BiVO4 (Red) and LT-1LA-BiVO4 (Maroon).<br>-FigS9b.txt : Steady-state photocurrent as a function of applied potential. 1LA-BiVO4 (Red) and LT-1LA-BiVO4 (Maroon).</p>
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