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Exposed area dependent PEC performance of BiVO4 photoanodes for solar water splitting

<p>#Data set of "Exposed area dependent PEC performance of BiVO4 photoanodes for solar water splitting"</p> <p>---</p> <p>## GENERAL INFORMATION</p> <p>1. Data set title: "Exposed area dependent PEC performance of BiVO4 photoanodes for solar water splitting"</p> <p>2.Authorship:&nbsp;<br>&nbsp; &nbsp;Name: Christian Robles<br>&nbsp; &nbsp;Institution: Institute of Advanced Materials (INAM), Universitat Jaume I, 12006, Castell&oacute;, Spain<br>&nbsp; &nbsp;ORCID: 0000-0003-1166-2950</p> <p>&nbsp; &nbsp;Name: Laura Monta&ntilde;&eacute;s<br>&nbsp; &nbsp;Institution: Institude of Advanced Materials (INAM), Universitat Jaume I, 12006, Castell&oacute;, Spain<br>&nbsp; &nbsp;ORCID: 0000-0002-1076-013X&nbsp;<br>&nbsp; &nbsp;<br>&nbsp; &nbsp;Name: Camilo A. Mesa<br>&nbsp; &nbsp;Institution: Institude of Advanced Materials (INAM), Universitat Jaume I, 12006, Castell&oacute;, Spain<br>&nbsp; &nbsp;ORCID: 0000-0002-8450-2563</p> <p>&nbsp; &nbsp;Name: Ana Guti&eacute;rrez-Blanco<br>&nbsp; &nbsp;Institution: Institude of Advanced Materials (INAM), Universitat Jaume I, 12006, Castell&oacute;, Spain<br>&nbsp; &nbsp;ORCID: 0000-0001-9412-2321</p> <p>&nbsp; &nbsp;Name: Francisco Fabregat-Santiago<br>&nbsp; &nbsp;Institution: Institude of Advanced Materials (INAM), Universitat Jaume I, 12006, Castell&oacute;, Spain<br>&nbsp; &nbsp; ORCID: 0000-0002-7503-1245</p> <p>&nbsp; &nbsp;Name: Agust&iacute;n O Alvarez<br>&nbsp; &nbsp;Institution: Institude of Advanced Materials (INAM), Universitat Jaume I, 12006, Castell&oacute;, Spain<br>&nbsp; &nbsp; ORCID:0000-0002-0920-5390</p> <p>&nbsp; &nbsp;Name: Sixto Gim&eacute;nez<br>&nbsp; &nbsp;Institution: Institude of Advanced Materials (INAM), Universitat Jaume I, 12006, Castell&oacute;, Spain<br>&nbsp; &nbsp;ORCID: 0000-0002-4522-3174<br>&nbsp; &nbsp;Email: &lt;sjulia@uji.es&gt;</p> <p>##FILE DESCRIPTION<br>---------------</p> <p>### Figure 1<br>-Fig1a.txt : Average photocurrent&ndash;voltage (J&ndash;V) plots measured by back illumination in 0.1 M KPi with 0.1 M Na2SO3 for the different exposed areas. Dark currents are represented as dashed lines.<br>-Fig1b.txt : Chronoamperometry plot measured by back illumination in 0.1 M KPi with 0.1 M Na2SO3 for the three exposed areas. Inset: &nbsp;BiVO4 photoanodes synthetized by electrochemical deposition and thermal evaporation. &nbsp;The area was delimited using an epoxy resin.<br>-Fig1c.txt : Average of current&ndash;voltage (J&ndash;V) plots measured by back illumination in 0.1 M KPi with 0.1 M Na2SO3 for an equal to exposed area of 1 cm2 (black), 0.2 cm2 (green) and a photoanode of 1 cm2 with a reduced exposed area of 0.2 cm2 (blue).&nbsp;</p> <p>### Figure 2<br>-Fig2a.txt : Charge-transfer resistance (Rct) as a function of applied potential extracted from IS.<br>-Fig2b.txt : Capacitance as a function of applied potential extracted from IS.<br>-Fig2c.txt : Series Resistance (Rc) as a function of the applied potential extracted from IS.<br>-Fig2d.txt : Density of surface states (DOS) as a function of applied potential extracted from IS.<br>-Fig2e.txt : IR-chopped chronoamperometry measurements at 1.2 V vs RHE.<br>-Fig2f.txt : Mobility of electrons (blue), diffusion resistance (green) and recombination resistance (red) as function of the exposed area extracted from the fitting of IMPS, IMVS and IMVS.</p> <p>### Figure S3<br>-FigS3a.txt : Current&ndash;voltage (J&ndash;V) plots measured in 0.1 M KPi (red) and 0.1 M KPi with 0.1 M Na2SO3 (blue).<br>-FigS3b.txt : Current&ndash;voltage (J&ndash;V) plots measured by front illumination (light blue) and back illumination (dark blue) in 0.1 M KPi with 0.1 M Na2SO3.</p> <p>### Figure S4<br>-FigS4a.txt : Incident-photon to current efficiency (IPCE) under back illumination measured and 0.1 M KPi with 0.1 M Na2SO3.<br>-FigS4b.txt : optical absorbance &nbsp;of the BiVO4 photoanode and its obtained bandgap (2.47 eV) extracted from the Tauc plot for a indirect transition.</p> <p>###Figure S5<br>-FigS5a.txt : Raman spectra for the 0.2 cm2 exposed area before measuring. Colours represent different spots measured in the same sample.<br>-FigS5b.txt : Raman spectra for the 0.4 cm2 exposed area before measuring. Colours represent different spots measured in the same sample.<br>-FigS5c.txt : Raman spectra for the 1 cm2 exposed area before measuring. Colours represent different spots measured in the same sample.<br>-FigS5d.txt : Raman spectra for the 0.2 cm2 exposed area after measuring. Colours represent different spots measured in the same sample.<br>-FigS5e.txt : Raman spectra for the 0.4 cm2 exposed area after measuring. Colours represent different spots measured in the same sample.<br>-FigS5f.txt : Raman spectra for the 1 cm2 exposed area after measuring. Colours represent different spots measured in the same sample.</p> <p>&nbsp;</p>

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36/100

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These five areas show where the dataset supports — or may limit — practical reuse.

Stewardship
4
Harmonization
4
Access
16
Reuse readiness
8
Engagement
4