Počet záznamů: 1  

Photocatalytic transformation in aerogel-based optofluidic microreactors

  1. 1.
    SYSNO ASEP0491749
    Druh ASEPC - Konferenční příspěvek (mezinárodní konf.)
    Zařazení RIVD - Článek ve sborníku
    NázevPhotocatalytic transformation in aerogel-based optofluidic microreactors
    Tvůrce(i) Özbaklr, Y. (TR)
    Jonáš, Alexandr (UPT-D) RID, SAI, ORCID
    Kiraz, A. (TR)
    Erkey, C. (TR)
    Celkový počet autorů4
    Číslo článku105352C
    Zdroj.dok.Integrated Optics: Devices, Materials, and Technologies XXII (Proceedungs of DPIE), 10535. - Bellingham : SPIE, 2018 - ISSN 0277-786X - ISBN 978-151061555-7
    Poč.str.10 s.
    Forma vydáníTištěná - P
    AkceIntegrated Optics: Devices, Materials, and Technologies /22./
    Datum konání29.01.2018 - 01.02.2018
    Místo konáníSan Francisco
    ZeměUS - Spojené státy americké
    Typ akceWRD
    Jazyk dok.eng - angličtina
    Země vyd.US - Spojené státy americké
    Klíč. slovaaerogels ; microchannels ; optofluidic waveguides ; photocatalyst ; photochemistry ; porous nanomaterials ; zotal internal reflection
    Vědní obor RIVBH - Optika, masery a lasery
    Obor OECDChemical process engineering
    Institucionální podporaUPT-D - RVO:68081731
    UT WOS000449770100046
    EID SCOPUS85047753571
    DOI10.1117/12.2292309
    AnotaceHere, we demonstrate a new type of microphotoreactor formed by a liquid-core optofluidic waveguide fabricated inside aerogel monoliths. It consists of microchannels in a monolithic aerogel block with embedded anatase titania photocatalysts. In this reactor system, aerogel confines core liquid within internal channels and, simultaneously, behave as waveguide cladding due to its extremely low refractive index of ∼1. Light is confined in the channels and is guided by total internal reflection (TIR) from the channel walls. We first fabricated L-shaped channels within silica aerogel monoliths (I= 0.22 g/cm3, n=1.06) without photocatalyst for photolysis reactions. Using the light delivered by waveguiding, photolysis reactions of methylene blue (MB) were carried out in these channels. We demonstrated that MB can be efficiently degraded in our optofluidic photoreactor, with the rate of dye photoconversion increasing linearly with increasing power of incident light. For photocatalytic transformation in this reactor system, titania particles were successfully embedded into the mesoporous network of silica aerogels with varying amount of the titania in the structure from 1.7 wt % to 50 % wt. The presence of titania and its desired crystalline structure in aerogel matrix was confirmed by XRF, XRD patterns and SEM images. Band gap of silica-Titania composites was estimated from Tauc plot calculated by Kubelka-Munk function from diffuse reflectance spectra of samples as near expected value of â‰3.2 eV. Photocatalytic activity and kinetic properties for photocatalytic degradation of phenol in the channels were investigated by a constant flow rate, and longer-Term stability of titania was evaluated.
    PracovištěÚstav přístrojové techniky
    KontaktMartina Šillerová, sillerova@ISIBrno.Cz, Tel.: 541 514 178
    Rok sběru2019
Počet záznamů: 1  

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