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Invited Talks

Articles
Title Hits
Lunch Seminar, Excellence Cluster: Understanding Written Artefacts (Hamburg, 09.05.22) 2039
InnoTalk, Infineon Technologies (Dresden, 26.01.22) 2614
Seminar of the Institute for Computational Physics, University of Stuttgart (03.12.21) 2274
Seminar TR 287 bulk reactions, Magdeburg (24.11.21) 2246
Session on "Light-Matter Interactions in New Materials and Meta-Architectures" at META2021 (21.07.22) 2272
Seminar of the Centre for Molecular Water Science CMWS, Hamburg (10.06.21) 2454
Colloquium of the DFG priority program "Dynamic Wetting of Flexible, Adaptive, and Switchable Substrates" (26.02.21) 2375
Laboratoire Modélisation et Simulation Multi Echelle MSME, Université Gustave Eiffel, Paris (30.04.21) 2417
Seminar in the Cluster of Excellence "Understanding Written Artefacts", Hamburg University (1.12.20) 2597
DESY Workshop on Surface and Interface Diffraction in Condensed Matter Physics and Chemistry, Hamburg, Germany (4.2.2020) 2927
Photon Science Users’ Meeting 2020 at DESY, Hamburg (30.01.20) 3104
Mimenima Graduate School Seminar, University of Bremen, Germany (25.11.2019) 2935
Seminar at Faculty of Physics and Chemistry of Materials, Salzburg University, Salzburg (Österreich) (3.10.2019) 2736
Seminar at Institut de Lumière et Matière, Lyon (France) (27.09.2019) 2666
Keynote lecture at International Conference on Materials and Innovative Engineering, Brenna (Poland) (27.08.2019) 2764

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News

  • 05.06.2026 Water, Clay and Carbon: A New Route to Sustainable Energy Storage

    🌎 Water, Clay and Carbon: A New Route to Sustainable Energy Storage - we demonstrate an all-water supercapacitor stable over 60,000 charging cycles. 

    💧⚡Can pure water store electrical energy? A research team within the Cluster of Excellence BlueMat – Water-Driven Materials has now shown that it can.

    🔋 By confining water within nanometer-sized channels in clay minerals, the team developed a supercapacitor capable of efficiently storing and transporting electrical charge with remarkable stability.

    💡 Read more in our latest press release ➡️ https://lnkd.in/dttmcBcQ

    Publication:
    Artemov, V. et al., All-water supercapacitor enabled by 1-nm clay channels, Nat Commun 17, 5014 (2026).

    https://www.nature.com/articles/s41467-026-73924-1

  • 23.04.2026 Lehmann Prize awarded to Patrick Huber

    🏆 Congratulations to Patrick Huber on receiving the Volker Lehmann Prize for the most outstanding talk at the 2026 Porous Semiconductors Science and Technology Conference (PSST2026) in Naples, Italy.

    💧 His presentation, “Nature’s Blueprint: Water-Enabled Functions in Hierarchically Porous Silicon,” showcased key research directions of the Cluster of Excellence BlueMat: Water-Driven Materials. 

    🏆 The Lehmann Prize honors Volker Lehmann, who—together with Leigh Canham and Ulrich Gösele - co-discovered the quantum confinement effect in silicon.

  • 22.10.2025  Water as an energy carrier: nanoporous silicon generates electricity from friction with water

    Exciting news! Our new publication in Nano Energy presents a novel way for converting mechanical energy into electricity – by harnessing water confined in nanometre-sized pores of silicon as the active working fluid (press release).

  • 29.09.2025 Colossal Effect of Nanopore Surface Ionic Charge on the Dynamics of Confined Water

    In a recent publication, we report a particularly rewarding result from a French-German collaboration linking Hamburg, Rennes, Grenoble and Paris, with key neutron scattering experiments carried out at the high-flux neutron reactor of the Institut Laue-Langevin in Grenoble, France. 

    We show that water behaves very differently when confined to tiny nanopores—and that surface charge makes all the difference. Adding ionic charges to pore walls dramatically slows down water motion, not just in the vicinity of the pore wall but throughout the entire pore. This long-range control goes far beyond simple wetting effects and highlights surface charge as a powerful tool for using water as a nanoscale working fluid in water-driven materials, membranes, and nanotechnologies.

  • 09.09.2025 When symmetry breaks in tiny spaces

    Nanopores unlock hidden chirality in exotic liquid crystals – with the observation now made by us within an international cooperation with Ukraine, France and Poland, they might find even wider usage in energy storage or conversion or tunable lenses (see press release).

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