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  • Vlad Michaelis

    NMR Spectroscopy of Metal Halide Materials: Shining Opportunities& Challenging Nuclei Metal halide perovskites are a fascinating class of materials with far-reaching potential in various applications, including photovoltaics, photodetectors, light-emitting diodes, […]

  • James Eills

    Parahydrogen-induced polarization at Low Magnetic Field Parahydrogen-induced polarization (PHIP) is a hyperpolarization method that can enhance NMR signals by several orders of magnitude. However, parahydrogen itself is NMR silent, so […]

  • Jiafei Mao

    DNP NMR spectroscopy for biological applications Dynamic Nuclear Polarization (DNP) has revolutionized NMR spectroscopy, enabling powerful new approaches to investigate molecular structures and mechanisms in the life sciences. This tutorial […]

  • David Rovnyak & Frank Delaglio

    NUS Schedules Old and New, and How to Evaluate Them for Your Data Increased adoption of non-uniform sampling (NUS) for multi-dimensional NMR spans ever-broader classes of experiments and increasingly challenging […]

  • Vineeth Thalakottoor

    PyOR: A Versatile Magnetic Resonance Simulator for Learning and Teaching Python On Resonance (PyOR) is an open-source, object-oriented simulation package for exploring magnetic resonance phenomena in both liquid- and solid-state […]

  • Kirill Sheberstov

    Title to be announced Abstract to be announced. 8:00 AM California or 11:00 AM Boston or 5:00 PM Paris or 8:30 PM Delhi

  • Andreas Meyer

    Using 19F to Study Paramagnetic Biomolecules at the Nanoscale with Electron Nuclear Double Resonance 19F labels are well established in NMR spectroscopy and allow accessing specific molecular information within biomolecular […]

  • Mikael Akke

    Resolving Protein–Ligand Binding Pathways by NMR Relaxation: Conformational Selection vs Induced Fit Protein–ligand binding is essential for biological function. A long-standing question is whether ligand binding occurs via conformational selection […]

  • Raphaële Clément

    Advancing Magnetic (Resonance) Methods to Track Processes inParamagnetic Battery Electrodes Solid-state NMR has become an indispensable tool for quantifying defects and tracking the nature and reversibility of local structure changes […]

  • Michael Ryan Hansen

    Ultra-Wideline Solid-State NMR Spectroscopy with Applications to Battery Materials and (Inter)Metallic Phases This talk will introduce recent advancements in ultra-wideline NMR techniques, focusing on the design principles of WURST pulses […]

  • Frédérique Pourpoint

    Stability of MOFs in the presence of water by solid-state NMR The stability of MOFs in the presence of water is a key factor for their performance in numerous applications. […]

  • Dave Britt

    Nuclear and Electron Spins and their Interactions NMR and Electron Paramagnetic Resonance (EPR) share much in common, but the much larger magnetic moment of the electron spin give rise to […]