Multi-functional MnO2 nanomaterials for photo-activated applications by a plasma-assisted fabrication route
Barreca, Davide and Gri, Filippo and Gasparotto, Alberto and Carraro, Giorgio and Bigiani, Lorenzo and Altantzis, Thomas and Zener, Bostjan and Stangar, Urska Lavrencic and Alessi, Bruno and Padmanaban, Dilli Babu and Mariotti, Davide and Maccato, Chiara (2019) Multi-functional MnO2 nanomaterials for photo-activated applications by a plasma-assisted fabrication route. Nanoscale, 11 (1). pp. 98-108. ISSN 2040-3372 (https://doi.org/10.1039/c8nr06468g)
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Abstract
Supported MnO2-based nanomaterials were fabricated on fluorine-doped tin oxide substrates using plasma enhanced-chemical vapor deposition (PE-CVD) between 100 °C and 400 °C, starting from a fluorinated Mn(II) diamine diketonate precursor. Growth experiments yielded β-MnO2 with a hierarchical morphology tuneable from dendritic structures to quasi-1D nanosystems as a function of growth temperature, whose variation also enabled a concomitant tailoring of the system fluorine content, and of the optical absorption and band gap. Preliminary photocatalytic tests were aimed at the investigation of photoinduced hydrophilic (PH) and solid phase photocatalytic (PC) performances of the present nanomaterials, as well as at the photodegradation of Plasmocorinth B azo-dye aqueous solutions. The obtained findings highlighted an attractive system photoactivity even under visible light, finely tailored by fluorine content, morphological organization and optical properties of the prepared nanostructures. The results indicate that the synthesized MnO2 nanosystems have potential applications as advanced smart materials for anti-fogging/self-cleaning end uses and water purification.
ORCID iDs
Barreca, Davide, Gri, Filippo, Gasparotto, Alberto, Carraro, Giorgio, Bigiani, Lorenzo, Altantzis, Thomas, Zener, Bostjan, Stangar, Urska Lavrencic, Alessi, Bruno, Padmanaban, Dilli Babu, Mariotti, Davide ORCID: https://orcid.org/0000-0003-1504-4383 and Maccato, Chiara;-
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Item type: Article ID code: 89313 Dates: DateEventJanuary 2019Published10 October 2018Published OnlineSubjects: Science > Physics > Plasma physics. Ionized gases Department: Faculty of Engineering > Design, Manufacture and Engineering Management Depositing user: Pure Administrator Date deposited: 20 May 2024 14:36 Last modified: 11 Nov 2024 14:20 URI: https://strathprints.strath.ac.uk/id/eprint/89313