Ultrabroadband 1D and 2D NMR Spectroscopy
Abstract
Abstract The chemical shift range of many NMR‐active isotopes cannot be excited in a single experiment by classical hard pulse high‐resolution spectroscopy or even conventional broadband excitation. Such nuclei can be addressed by specifically optimized saturation pulses or xy ‐excitation, which are derived from linear frequency sweeps that are further optimized using methods derived from optimal control theory. A multi‐isotope 1D experiment covering 6 MHz as well as homonuclear COSY and heteronuclear HMBC experiments covering more than 100 kHz are demonstrated, which can be adapted to fit any needs for specific isotopes at any spectrometer field. In general, the approach is very useful for 1D and 2D absolute value overview spectra at high magnetic fields and/or wideband and low‐gamma nuclei.
Article Details
Authors (12)
Yannik T. Woordes
Department of Chemistry for Life Sciences
Kyryl Kobzar
Bruker Biospin GmbH & Co. KG Rudolf‐Plank‐Straße 23 76275 Ettlingen Germany
Sebastian Ehni
Bruker Switzerland AG Industriestr. 26 Fällanden 8117 Switzerland
Benjamin Görling
Bruker Biospin GmbH & Co. KG Rudolf‐Plank‐Straße 23 76275 Ettlingen Germany
Franz Schilling
Angelika Seliwjorstow
Institute of Organic Chemistry
Zbigniew L. Pianowski
Peter W. Roesky
Stefan Bräse
Institute of Biological and Chemical Systems–Functional Molecular Systems, Karlsruhe Institute of Technology
Jörg Eppinger
Steffen J. Glaser
School of Natural Sciences Technische Universität München Lichtenbergstraße 4 85747 Garching Germany
Burkhard Luy
Institute for Biological Interfaces 4—Magnetic Resonance, Karlsruhe Institute of Technology 2 , Eggenstein-Leopoldshafen,