Forschungsgruppe Organische Hochleistungsmaterialien

Organization Name (de) Name der Organisation (de)
E163-02-2 - Forschungsgruppe Organische Hochleistungsmaterialien
 
Code Kennzahl
E163-02-2
 
Type of Organization Organisationstyp
Research Group
Parent OrgUnit Übergeordnete Organisation
 
 


Results 21-40 of 156 (Search time: 0.002 seconds).

PreviewAuthor(s)TitleTypeIssue Date
21Rimmele, Martina ; Ableidinger, Klaus ; Marsh, Adam V. ; Cheetham, Nathan J. ; Taublaender, M. Josef ; Buchner, Alina ; Prinz, Jonathan ; Fröhlich, Johannes ; Unterlass, Miriam M. ; Heeney, Martin ; Glöcklhofer, Florian Thioalkyl- and sulfone-substituted poly(p-phenylene vinylene)sArtikel Article 2019
22Unterlass, Miriam M. ; Moura, Hipassia M. Designing High-Perfomance Dyes@Zeolites by Green Hydrothermal Route: Pathways and ChallengesPräsentation Presentation2019
23Iqbal, Mohamed Musthafa ; Unterlass, Miriam M. Design and Synthesis of Polybenzimidazole COFs (PBI-COFs) via Hydrothermal PolymerizationPräsentation Presentation2019
4Moura, Hipassia M. ; Unterlass, Miriam M. One-Pot Hydrothermal Synthesis Of Light Harvesting Organic-Inorganic Hybrid MaterialsPräsentation Presentation2019
5Moura, Hipassia M. ; Unterlass, Miriam M. Perylene Dyes@LTL-Type Zeolites: High-Performance Hybrid Materials for Optoelectronic ApplicationsPräsentation Presentation2019
6Iqbal, Mohamed Musthafa ; Unterlass, Miriam M. Green Synthesis of Polybenzimidazole COFs by Hydrothermal PolymerizationPräsentation Presentation2019
7Lahnsteiner, Marianne ; Moura, Hipassia M. ; Unterlass, Miriam M. The Hydrothermal Route to Porous Polyimide NetworksPräsentation Presentation2019
8Fritz, Patrick ; Unterlass, Miriam M. Hydrothermal Route Towards Porous Polyimide NetworksPräsentation Presentation2019
9Moura, Hipassia M. ; Unterlass, Miriam M. Perylene Dyes@LTL-Type Zeolites: High-Performance Hybrid Materials for Optoelectronic ApplicationsPräsentation Presentation2019
10Moura, Hipassia M. ; Unterlass, Miriam M. Perylene Bisimide@Zeolite Hybrid Materials by One-pot Hydrothermal SynthesisPräsentation Presentation2019
11Iqbal, Mohamed Musthafa ; Unterlass, Miriam M. Synthesis of High-Performance Covalent Organic Frameworks via a Green Hydrothermal RoutePräsentation Presentation2019
12Gazil, Olivier ; Virgilio, Nick ; Unterlass, Miriam M. Facile Green Hydrothermal Synthesis Of Gold Nanoparticles Immobilized Onto Porous Polyurethane Foam MonolithsPräsentation Presentation2019
13Unterlass, Miriam M. Fully crystalline polymers, liquid crystals, and shape-anisotropic particles from a prototypical rigid-rod polymerPräsentation Presentation2019
14Unterlass, Miriam M. Hydrothermal Synthesis of Polyheterocyclics - Generating Organic High-Performance Polymers in Nothing But Hot WaterPräsentation Presentation2019
15Unterlass, Miriam M. Hydrothermal Polymerization of PolyheterocyclicsPräsentation Presentation2019
16Unterlass, Miriam M. Generating Fully Aromatic and Heterocyclic Materials HydrothermallyPräsentation Presentation2019
17Unterlass, Miriam M. Green Synthesis of Porous Heterocyclics by Hydrothermal PolymerizationPräsentation Presentation2019
18Unterlass, Miriam M. Hybrid Materials By Hydrothermal SynthesisPräsentation Presentation2019
19Sinn, Gerhard ; Singer, Gerald ; Jocher, Leo ; Unterlass, Miriam M. ; Rennhofer, Harald ; Windberger, Ursula ; Wendrinsky, Josef ; Stöger, Werner ; Semlitsch, Karl H ; Lichtenegger, Helga C. Mechanical and Fracture Mechanical Properties of Matrix-Reinforced Carbon Fiber Composites with Carbon NanotubesArtikel Article 2019
20Taublaender, M. Josef ; Glöcklhofer, Florian ; Marchetti-Deschmann, Martina ; Unterlass, Miriam M. Grüne und rasche hydrothermale Kristallisation und Synthese vollständig konjugierter aromatischer VerbindungenArtikel Article 17-Sep-2018