The development of new materials based on abundant elements, reduced toxicity is today crucial for the next generation of energy device. Titanium-doped hydroxyapatite (TiHA) was tested for the first time as photoanode material for Dye - Sensitized Solar Cells (DSSCs). The chemical composition and energy structure of TiHA powders with increasing titanium content (5 wt.%, 10 wt.% and 15 wt.%) were extensively characterized by surface electron spectroscopies, XPS and UPS. Their compatibility with conventional ruthenium-based dyes molecules was also assessed, producing considerable uptake. TiHA films were produced by screen-printing technique and XRD analyses confirm the presence of apatitic structure. The film properties were completely determined by optical, morphological (FE-SEM) and functional characterizations. Finally, TiHA-based DSSCs were assembled and their photovoltaic performance were assessed. The best efficiency, equal to 0.14 %, was obtained for the TiHA containing 15 wt.% of titanium. These results open the path for the possible application of doped hydroxyapatite as novel materials for energy conversion systems.

Titanium-doped hydroxyapatites photoanodes for Dye-Sensitized Solar Cells

Nicola Sangiorgi
Primo
;
Riccardo Bendoni;Alex Sangiorgi;Lucrezia Aversa;Roberto Verucchi;Alessio Adamiano;Monica Sandri;Anna Tampieri;Alessandra Sanson
Ultimo
2021

Abstract

The development of new materials based on abundant elements, reduced toxicity is today crucial for the next generation of energy device. Titanium-doped hydroxyapatite (TiHA) was tested for the first time as photoanode material for Dye - Sensitized Solar Cells (DSSCs). The chemical composition and energy structure of TiHA powders with increasing titanium content (5 wt.%, 10 wt.% and 15 wt.%) were extensively characterized by surface electron spectroscopies, XPS and UPS. Their compatibility with conventional ruthenium-based dyes molecules was also assessed, producing considerable uptake. TiHA films were produced by screen-printing technique and XRD analyses confirm the presence of apatitic structure. The film properties were completely determined by optical, morphological (FE-SEM) and functional characterizations. Finally, TiHA-based DSSCs were assembled and their photovoltaic performance were assessed. The best efficiency, equal to 0.14 %, was obtained for the TiHA containing 15 wt.% of titanium. These results open the path for the possible application of doped hydroxyapatite as novel materials for energy conversion systems.
2021
Istituto di Scienza, Tecnologia e Sostenibilità per lo Sviluppo dei Materiali Ceramici - ISSMC (ex ISTEC)
Istituto dei Materiali per l'Elettronica ed il Magnetismo - IMEM - Sede Secondaria Trento
Inglese
47
9701
9710
10
https://www.sciencedirect.com/science/article/pii/S027288422033710X
Esperti anonimi
Films, Spectroscopy, Chemical Properties, Optical Properties, Apatite, Electrodes
Internazionale
Elettronico
No
10
info:eu-repo/semantics/article
262
Sangiorgi, Nicola; Bendoni, Riccardo; Sangiorgi, Alex; Aversa, Lucrezia; Tatti, Roberta; Verucchi, Roberto; Adamiano, Alessio; Sandri, Monica; Tampier...espandi
01 Contributo su Rivista::01.01 Articolo in rivista
restricted
   Smart nano-structured devices hierarchically assembled by bio-mineralization processes
   SMILEY
   European Commision, call FP7-NMP-2012-SMALL-6
   3,996,103 €
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/421195
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