Mgr.

Petr Smísitel

CEITEC, RG-1-02 – Researcher

Petr.Smisitel@ceitec.vutbr.cz

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Mgr. Petr Smísitel

Publications

  • 2023

    SMÍSITEL, P.; ŠIMŮNKOVÁ, H.; CHMELA, O.; CLAROS VARGAS, M.; VALLEJOS VARGAS, S.; HUBÁLEK, J. Electrical characterization of hydrothermally synthesized manganese dioxide nanowires with regard to NO2 adsorption/desorption thermodynamics. In Engineering Proceedings. Engineering Proceedings. MDPI, 2023. p. 1-6. ISSN: 2673-4591.
    Detail | WWW | Full text in the Digital Library

    TUMOVÁ, Š.; MALEČKOVÁ, R.; KUBÁČ, L.; AKRMAN, J.; VÍTEČEK, J.; VALA, M.; WEITER, M.; SMÍSITEL, P.; HUBÁLEK, J.; PEŠKOVÁ, M.; SMILEK, J. Conducting Hydrogel Based on Novel Polymer Composite PEDOT:DBSA for Bioelectronic Applications. Linz: JKU Linz, 2023. p. 85-85.
    Detail

    SMÍSITEL, P.; ŠIMŮNKOVÁ, H.; CHMELA, O.; CLAROS VARGAS, M.; VALLEJOS VARGAS, S.; HUBÁLEK, J. Electrical Characterization of Hydrothermally Synthesized Metal Oxide Nanowires with Regard to Oxygen Adsorption/Desorption Thermodynamics. In NANOCON 2022 Conference Proceedings. Proceedings 12th International Conference on Nanomaterials - Research & Application. 1st Edition. TANGER Ltd., 2023. p. 64-70. ISBN: 978-80-88365-09-9. ISSN: 2694-930X.
    Detail | WWW | Full text in the Digital Library

    ŠIMŮNKOVÁ, H.; SMÍSITEL, P.; CHMELA, O.; VALLEJOS VARGAS, S.; HUBÁLEK, J. NO2 Adsorption/Desorption Thermodynamics in Single Tungsten Oxide Nanowire Gas Sensors. In 2023 IEEE SENSORS. 2023 IEEE SENSORS. online: IEEE, 2023. p. 1-4. ISBN: 979-8-3503-0387-2. ISSN: 2168-9229.
    Detail | WWW

  • 2022

    MALEČKOVÁ R., TUMOVÁ Š., SMÍSITEL P., KUBÁČ L., AKRMAN J., PEŠKOVÁ M., VÍTEČEK J., HUBÁLEK J.,VALA M., WEITER M. Vodivý hydrogel na bázi nového matriálu PEDOT:DBSA pro bioelektronické aplikace. Laboratorní a klinické aspekty regenerativní medicíny. Praha: České vysoké učení technické v Praze, 2022. p. 59-59. ISBN: 978-80-01-07052-9.
    Detail | WWW

    SMÍSITEL, P.; HUBÁLEK, J.; CHMELA, O. Study of oxygen adsorption/desorption thermodynamics of single WO3 nanowire. 2022.
    Detail

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