1044253-97-5Relevant academic research and scientific papers
Dynamic nuclear polarization with a water-soluble rigid biradical
Kiesewetter, Matthew K.,Corzilius, Bjoern,Smith, Albert A.,Griffin, Robert G.,Swager, Timothy M.
, p. 4537 - 4540 (2012)
A new biradical polarizing agent, bTbtk-py, for dynamic nuclear polarization (DNP) experiments in aqueous media is reported. The synthesis is discussed in light of the requirements of the optimum, theoretical, biradical system. To date, the DNP NMR signal enhancement resulting from bTbtk-py is the largest of any biradical in the ideal glycerol/water solvent matrix, ε = 230. EPR and X-ray crystallography are used to characterize the molecule and suggest approaches for further optimizing the biradical distance and relative orientation.
HIGHLY EFFICIENT POLARIZING AGENTS FOR DYNAMIC NUCLEAR POLARIZATION
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Paragraph 29; 30, (2014/10/29)
The invention relates to compounds of general formula (I) wherein X is C=O or SO2, M is NR2 or O, and Q1 and Q2 are nitroxide-containing radicals, and their use as a Dynamic Nuclear Polarization (DNP) agent for polarizing an NMR-active spin of a nucleus of an analyte in Nuclear Magnetic Resonance (NMR) spectroscopy.
Highly efficient polarizing agents for dynamic nuclear polarization
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Paragraph 0079, (2014/10/28)
The invention relates to compounds of general formula (I) wherein X is C=O or SO2, M is NR2 or O, and Q1 and Q2 are nitroxide-containing radicals, and their use as a Dynamic Nuclear Polarization (DNP) agent for polarizing an NMR-active spin of a nucleus of an analyte in Nuclear Magnetic Resonance (NMR) spectroscopy.
Large molecular weight nitroxide biradicals providing efficient dynamic nuclear polarization at temperatures up to 200 K
Zagdoun, Alexandre,Casano, Gilles,Ouari, Olivier,Schwarzwaelder, Martin,Rossini, Aaron J.,Aussenac, Fabien,Yulikov, Maxim,Jeschke, Gunnar,Coperet, Christophe,Lesage, Anne,Tordo, Paul,Emsley, Lyndon
supporting information, p. 12790 - 12797 (2013/09/23)
A series of seven functionalized nitroxide biradicals (the bTbK biradical and six derivatives) are investigated as exogenous polarization sources for dynamic nuclear polarization (DNP) solid-state NMR at 9.4 T and with ca. 100 K sample temperatures. The impact of electron relaxation times on the DNP enhancement (ε) is examined, and we observe that longer inversion recovery and phase memory relaxation times provide larger ε. All radicals are tested in both bulk 1,1,2,2-tetrachloroethane solutions and in mesoporous materials, and the difference in ε between the two cases is discussed. The impact of the sample temperature and magic angle spinning frequency on ε is investigated for several radicals each characterized by a range of electron relaxation times. In particular, TEKPol, a bulky derivative of bTbK with a molecular weight of 905 g·mol-1, is presented. Its high-saturation factor makes it a very efficient polarizing agent for DNP, yielding unprecedented proton enhancements of over 200 in both bulk and materials samples at 9.4 T and 100 K. TEKPol also yields encouraging enhancements of 33 at 180 K and 12 at 200 K, suggesting that with the continued improvement of radicals large ε may be obtained at higher temperatures.
Highly efficient, water-soluble polarizing agents for dynamic nuclear polarization at high frequency
Sauvee, Claire,Rosay, Melanie,Casano, Gilles,Aussenac, Fabien,Weber, Ralph T.,Ouari, Olivier,Tordo, Paul
supporting information, p. 10858 - 10861 (2013/10/22)
Well polarized: Two new polarizing agents PyPol and AMUPol soluble in glycerol/water mixtures are used for dynamic nuclear polarization (DNP) NMR spectroscopy. The enhancement factors (ε) are about 3.5 to 4 times larger than for the established agent TOTA
Effective 2,6-substitution of piperidine nitroxyl radical by carbonyl compound
Sakai, Kiyoshi,Yamada, Ken-ichi,Yamasaki, Toshihide,Kinoshita, Yuichi,Mito, Fumiya,Utsumi, Hideo
experimental part, p. 2311 - 2315 (2010/06/12)
Nitroxyl radicals (nitroxides) with unpaired electron are widely used as antioxidants, contrast agents, and spin probes. Although piperidine nitroxyl radicals have many applications, these are mainly tetramethylpiperidine compounds, and only a few reports consider the substitution of N-O surround as a reaction site, such as 2,2,6,6-tetrasubstituted piperidine nitroxyl radicals. Our results revealed that the 2,6-position of the 2,2,6,6-tetramethylpiperidin-4-one compound was substituted by cyclohexyl groups to produce 2,2,6,6-tetrasubstituted piperidin-4-one derivatives under mild reaction conditions. An interesting result was obtained by using 15N-labeled NH4Cl instead of 14NH4Cl: it gave 15N-labeled 2,2,6,6-tetrasubstituted piperidin-4-one-1-oxyls with a high 15N content. In conclusion, the new method for the synthesis of nitroxyl radicals readily yields 2,2,6,6-tetrasubstituted piperidin-4-one under mild conditions.
