Institute Homepage
Institute Homepage
EN
Sign In
Forschung
Forschung
Forschung
Übersicht
Publikationen
Abteilungen
Empirische Inferenz
Haptische Intelligenz
Perzeptive Systeme
Physische Intelligenz
Robotik-Materialien
Soziale Grundlagen der Informatik
Forschungsgruppen
Algorithms and Society
Biomimetic Materials and Machines
Computational Applied Mathematics & AI Lab
Deep Models and Optimization
Human Aspects of Machine Learning
Learning and Dynamical Systems
Neuromechanics of Movement
Organizational Leadership and Diversity
Robotic Composites and Compositions
Robust Machine Learning
Safety- and Efficiency-Aligned Learning
Wild, Efficient, and Innovative AI
Über uns
Über uns
Personen
Wissenschaft
Personenverzeichnis
Alumni-Netzwerk
Kontakt
Management & Boards
Kontakt
Anreise
Our Institute
Unser Institut
Campus-Überblick
Campuseinrichtungen
Code of Conduct
Anlaufstellen für Institutsangehörige
Unsere Geschichte
100/10-jähriges Jubiläum
Karriere
Karriere
Karriere
Karriere
Offene Stellen
Überblick über Promotionsprogramme
Doctoral Programs Overview
International Max Planck Research School for Intelligent Systems
Max Planck ETH Center for Learning Systems
ELLIS PhD Program
Karriere
Praktika
Planck Academy
Service
Service
Service-Einrichtungen
Unsere Services
Verwaltung
Scientific Coordination Office
IT Services
Welcome Service
Zentrale Wissenschaftliche Einrichtungen
Überblick
Materials
Medical Systems
Optics and Sensing Laboratory
Robotics
Scientific Computing
Software Workshop
Werkstätten
Workshop Overview
Fine Mechanical Workshop
Glass Workshop
Central Mechanical Workshop
Mechatronics Workshop
Campus Services
Campuseinrichtungen
Bibliothek
Max Planck House Tübingen
Impact
Impact
Impact
Unser Impact
Diversität
Nachhaltigkeit
Entrepreneurship & Innovation
Kooperationen
Unsere Partner
Promotionsprogramme
Initiativen und Partner
Cyber Valley
European Laboratory for Learning and Intelligent Systems
ELLIS Institute Tübingen
Tübingen AI Center
Personen
Aktuelles
Events
Forschung
Forschung
Forschung
Übersicht
Publikationen
Abteilungen
Empirische Inferenz
Haptische Intelligenz
Perzeptive Systeme
Physische Intelligenz
Robotik-Materialien
Soziale Grundlagen der Informatik
Forschungsgruppen
Algorithms and Society
Biomimetic Materials and Machines
Computational Applied Mathematics & AI Lab
Deep Models and Optimization
Human Aspects of Machine Learning
Learning and Dynamical Systems
Neuromechanics of Movement
Organizational Leadership and Diversity
Robotic Composites and Compositions
Robust Machine Learning
Safety- and Efficiency-Aligned Learning
Wild, Efficient, and Innovative AI
Über uns
Über uns
Personen
Wissenschaft
Personenverzeichnis
Alumni-Netzwerk
Kontakt
Management & Boards
Kontakt
Anreise
Our Institute
Unser Institut
Campus-Überblick
Campuseinrichtungen
Code of Conduct
Anlaufstellen für Institutsangehörige
Unsere Geschichte
100/10-jähriges Jubiläum
Karriere
Karriere
Karriere
Karriere
Offene Stellen
Überblick über Promotionsprogramme
Doctoral Programs Overview
International Max Planck Research School for Intelligent Systems
Max Planck ETH Center for Learning Systems
ELLIS PhD Program
Karriere
Praktika
Planck Academy
Service
Service
Service-Einrichtungen
Unsere Services
Verwaltung
Scientific Coordination Office
IT Services
Welcome Service
Zentrale Wissenschaftliche Einrichtungen
Überblick
Materials
Medical Systems
Optics and Sensing Laboratory
Robotics
Scientific Computing
Software Workshop
Werkstätten
Workshop Overview
Fine Mechanical Workshop
Glass Workshop
Central Mechanical Workshop
Mechatronics Workshop
Campus Services
Campuseinrichtungen
Bibliothek
Max Planck House Tübingen
Impact
Impact
Impact
Unser Impact
Diversität
Nachhaltigkeit
Entrepreneurship & Innovation
Kooperationen
Unsere Partner
Promotionsprogramme
Initiativen und Partner
Cyber Valley
European Laboratory for Learning and Intelligent Systems
ELLIS Institute Tübingen
Tübingen AI Center
Personen
Aktuelles
Events
Back
Michael Hirscher
Note
: Michael Hirscher has transitioned from the institute (Alumni).
Research Scientist
Alumni
+49 711 689-1808
More
Website
Publications
Modern Magnetic Systems
Article
Quantum sieving for separation of hydrogen isotopes using MOFs
Oh, H., Hirscher, M.
{European Journal of Inorganic Chemistry}
, 2016(27):4278-4289, Wiley-VCH, Weinheim, Germany, 2016
DOI
BibTeX
Modern Magnetic Systems
Article
Resistance to the transport of H2 through the external surface of as-made and modified silicalite-1 (MFI)
Kalantzopoulos, G. N., Policicchio, A., Maccallini, E., Krkljus, I., Ciuchi, F., Hirscher, M., Agostino, R. G., Golemme, G.
{Microporous and Mesoporous Materials}
, 220:290-297, Elsevier, Amsterdam, 2016
DOI
BibTeX
Modern Magnetic Systems
Article
The usable capacity of porous materials for hydrogen storage
Schlichtenmayer, M., Hirscher, M.
{Applied Physics A}
, 122(4), Springer-Verlag Heidelberg, Heidelberg, 2016
DOI
BibTeX
Modern Magnetic Systems
Article
"Job-Sharing" storage of hydrogen in Ru/Li2O nanocomposites
Fu, L., Tang, K., Oh, H., Kandavel, M., Bräuniger, T., Vinod Chandran, C., Menzel, A., Hirscher, M., Samuelis, D., Maier, J.
{Nano Letters}
, 15(6):4170-4175, American Chemical Society, Washington, DC, 2015
DOI
BibTeX
Modern Magnetic Systems
Article
Focused ion beam micromachining enables novel optics for X-ray microscopy
Keskinbora, K., Sanli, U., Grévent, C., Hirscher, M., Schütz, G.
{Microscopy and Microanalysis}
, 21(Suppl 3):1983-1984, Springer-Verlag New York, New York, NY, 2015
DOI
BibTeX
Modern Magnetic Systems
Article
Formation of a quasi-solid structure by intercalated noble gas atoms in pores of CuI-MFU-4l metal-organic framework
Magdysyuk, O. V., Denysenko, D., Weinrauch, I., Volkmer, D., Hirscher, M., Dinnebier, R. E.
{Chemical Communications}
, 51(4):714-717, Royal Society of Chemistry, Cambridge, UK, 2015
DOI
BibTeX
Modern Magnetic Systems
Article
Hydrogen isotope separation in metal-organic frameworks: Kinetic or chemical affinity quantum-sieving?
Savchenko, I., Mavrandonakis, A., Heine, T., Oh, H., Teufel, J., Hirscher, M.
{Microporous and Mesoporous Materials}
, 216:133-137, Elsevier, Amsterdam, 2015
DOI
BibTeX
Modern Magnetic Systems
Article
Isosteric heat of hydrogen adsorption on MOFs: comparison between adsorption calorimetry, sorption isosteric metod, and analytical models
Kloutse, A. F., Zacharia, R., Cossement, D., Chahine, R., Balderas-Xicohténcatl, R., Oh, H., Streppel, B., Schlichtenmayer, M., Hirscher, M.
{Applied Physics A}
, 121(4):1417-1424, Springer-Verlag Heidelberg, Heidelberg, 2015
DOI
BibTeX
Modern Magnetic Systems
Article
Nitrogen-rich covalent triazine frameworks as high-performance platforms for selective carbon capture and storage
Hug, S., Stegbauer, L., Oh, H., Hirscher, M., Lotsch, B. V.
{Chemistry of Materials}
, 27(23):8001-8010, American Chemical Society, Washington, D.C., 2015
DOI
BibTeX
Modern Magnetic Systems
Article
Single-step 3D nanofabrication of kinoform optics via gray-scale focused ion beam lithography for efficient X-ray focusing
Keskinbora, K., Grévent, C., Hirscher, M., Weigand, M., Schütz, G.
{Advanced Optical Materials}
, 3:792-800, WILEY-VCH Verlag GmbH Co. KGaA, Weinheim, 2015
DOI
BibTeX
«
1
2
3
4
5
6
7
8
…
15
16
»
Diese Website verwendet Cookies, um sicherzustellen, dass Sie die bestmögliche Nutzererfahrung erhalten.
Mehr erfahren
.
Accept