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The accumulation of plastic waste worldwide poses a serious threat to wildlife and ecosystems. Catalytic processes that ...
Bruker’s 263, 395 and 527 GHz DNP-NMR Spectrometers are the world’s first commercially available solid-state dynamic nuclear polarization (DNP-NMR) systems .
Solid–state 13 C–NMR measurements were carried out at –125 °C in a 9.39 T field on frozen solutions prepared from nearly equimolar mixtures of 0.5β Fab fragments and 13 C–labeled RP135.
Boosting Solid-State NMR ... In one case, the boosted signals allowed the researchers to collect in 35 minutes a 13 C NMR spectrum that would otherwise take at least 70 days, ...
All solid-state NMR measurements were performed using a Varian NMR system 400 WB spectrometer (Agilent Technologies, Santana Clara, CA, USA) with an operating frequency of 100.57 MHz for 13 C ...
Table 1 lists current parameter sets for the s-nuclei 31 P, 13 C, 29 Si, 15 N, 209 Pb, 79Br and 27 Al. Additional experiments can be provided upon request by Bruker’s solid-state applications team.
Solid state NMR still requires trained spectroscopists in order to achieve great results, even in standard backbone assignment experiments, and even the most basic experiment can pose a challenge ...
Introduction to Solid-state NMR. NMR of solids is very different from that of liquids, for a simple reason: in liquids the molecules move, in ... 0.04% and 0.15% respectively. So, on average a given ...
Solid-State NMR has become an important method in zeolite research. Numerous new developments and applications of solid-state NMR techniques have evolved. Just to name a few of the more important ones ...
The team adopted the fluoride ion channel protein Fluc-Ec1 combined with deuterium substitution and 19F labeling methods, paving a new path for membrane protein nuclear magnetic resonance (NMR ...
7. B. Chen et al., "Monitoring the Reactivity of Amorphous Aspirin as a Minor Component with 13 C Isotopic Labeling and Solid-State 13 C CPMAS NMR Spectroscopy," paper presented at the American ...
Now scientists have developed a solid-state material that appears to be one of the fastest conductors of magnesium-ions, which could lead to safer and more efficient batteries.
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