Christian Koczwara
(Ehemalig)
Publikationen
- Veröffentlicht
Nanoporous activated carbon cloth for H2 storage and selective CO2/CH4 separation
Kostoglou, N., Koczwara, C., Babic, B., Polychronopoulou, K., Constantinides, G., Paris, O., Rebholz, C. & Mitterer, C., 2018.Publikationen: Konferenzbeitrag › Poster › Forschung
- Veröffentlicht
Nanoporous polymer-derived activated carbon for hydrogen adsorption and electrochemical energy storage
Kostoglou, N., Koczwara, C., Stock, S., Tampaxis, C., Charalambopoulou, G., Steriotis, T., Paris, O., Rebholz, C. & Mitterer, C., 1 Jan. 2022, in: Chemical Engineering Journal. 427.2021, 1 January, 10 S., 131730.Publikationen: Beitrag in Fachzeitschrift › Artikel › Forschung › (peer-reviewed)
- Veröffentlicht
Performance evaluation and in situ X-ray scattering of ordered mesoporous carbons for electrochemical energy storage applications
Koczwara, C., 2019Publikationen: Thesis / Studienabschlussarbeiten und Habilitationsschriften › Dissertation
- Veröffentlicht
Plasma-Derived Graphene-Based Materials for Water Purification and Energy Storage
Natter, N., Kostoglou, N., Koczwara, C., Tampaxis, C., Steriotis, T., Gupta, R. K., Paris, O., Rebholz, C. & Mitterer, C., 3 Apr. 2019, in: C – journal of carbon research. 5.2019, 2, 12 S.Publikationen: Beitrag in Fachzeitschrift › Artikel › Forschung › (peer-reviewed)
- Veröffentlicht
Quantification of ion confinement and desolvation in nanoporous carbon supercapacitors with modelling and in situ X-ray scattering
Prehal, C., Koczwara, C., Jäckel, N., Schreiber, A., Burian, M., Amenitsch, H., Hartmann, M. A., Presser, V. & Paris, O., 30 Jan. 2017, in: Nature Energy. 2.2017, 16215.Publikationen: Beitrag in Fachzeitschrift › Artikel › Forschung › (peer-reviewed)
- Veröffentlicht
Salt concentration and charging velocity determine ion charge storage mechanism in nanoporous supercapacitors
Prehal, C., Koczwara, C., Amenitsch, H., Presser, V. & Paris, O., 1 Dez. 2018, in: Nature Communications. 9, 1, 4145.Publikationen: Beitrag in Fachzeitschrift › Artikel › Forschung › (peer-reviewed)
- Veröffentlicht
Salt concentration and charging velocity determine ion charge storage mechanism in nanoporous supercapacitors: The original version of this Article contained an error in the Acknowledgements, which was incorrectly omitted from the end of the following: ‘The research leading to these results has received funding from the European Community’s Horizon 2020 Framework Programme under grant agreement nº 730872.’ This has been corrected in both the PDF and HTML versions of the Article.
Prehal, C., Koczwara, C., Amenitsch, H., Presser, V. & Paris, O., 8 Okt. 2018, in: Nature Communications. 9.2018, 1, 256.Publikationen: Beitrag in Fachzeitschrift › Entscheidungsbesprechung › (peer-reviewed)
- Veröffentlicht
Structure and kinetics of ions in nanoporous carbon supercapacitors studied by in situ X-ray scattering and atomistic modelling
Prehal, C., Koczwara, C., Jäckel, N., Amenitsch, H., Presser, V. & Paris, O., 27 Feb. 2017.Publikationen: Konferenzbeitrag › Poster › Forschung
- Veröffentlicht
Towards Real-Time Ion-Specific Structural Sensitivity in Nanoporous Carbon Electrodes Using in Situ Anomalous Small-Angle X-ray Scattering
Koczwara, C., Prehal, C., Haas, S., Boesecke, P., Huesing, N. & Paris, O., 13 Nov. 2019, in: ACS Applied Materials and Interfaces. 11.2019, 45, S. 42214-42220 7 S.Publikationen: Beitrag in Fachzeitschrift › Artikel › Forschung › (peer-reviewed)