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Magnetic resonance methods, including nuclear magnetic resonance (NMR) and electron paramagnetic resonance (EPR), are non-invasive, atom-specific, quantitative, and capable of probing liquid and solid ...
Paramagnetic NMR to study iron sulfur proteins: 13C detected experiments illuminate the vicinity of the metal center. Synthesis of a 13C-methylene-labeled isoleucine precursor as a useful tool for ...
The Swedish NMR Centre (SNC) is a National and International infrastructure offering access to one of the best NMR labs in Europe. At present, we offer access to eight different spectrometers, ranging ...
Figure 1: Molecular crowding of the Alzheimer’s disease associated protein tau in liquid-liquid phase separated condensates revealed by NMR spectroscopy. (A) Liquid droplets of tau visualized by ...
This structural information can be extracted from the NMR in combination with molecular modeling and is of utmost importance for the design of selective drugs for each siglec member. This work ...
Although phosphorus has a much wider NMR chemical shift range than hydrogen or carbon, it usually stays in the 250 to –250ppm range. But chemical shifts in paramagnetic molecules like the iron complex ...
A Paramagnetic protocol is integrated in the Spinsolve NMR spectrometer that makes it possible to measure paramagnetic compounds at a higher concentration when compared to the traditional 1D proton ...
However, the way the NMR data is currently recorded is rather ... Frans Mulder searched for so-called paramagnetic molecules. The literature led him to complexes of the element gadolinium (Gd ...
For the first time, a 3d metal-bound hydrogen atom was detected by paramagnetic solution nuclear magnetic resonance (NMR) spectroscopy. With the help of computational modelling, chemists have pinned ...
EPR offers improved sensitivity, and allows researchers to perform experiments on larger molecules and within shorter time-frames, when compared with nuclear magnetic resonance (NMR). AFM uses a ...