Results 241 to 250 of about 45,811 (284)
Paramagnetic Agents for SE DNP: Synthesis and ESR Characterization of New Lipophilic Derivatives of Finland Trityl. [PDF]
Tormyshev VM +5 more
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Structural insights into the mechanism underpinning iron piracy in pathogenic <i>Neisseria</i>. [PDF]
Dubey S +10 more
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Sulfur-containing radicals: From EPR spectroscopic studies to synthetic methodology.
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A New Methodology for the Provenance of Marble Based on EPR Spectroscopy
Archaeometry, 2002Fifteen years of research in investigating the characteristics of the EPR spectra of different types of white marble from several quarries in the Eastern Mediterranean has produced an accumulation of a large number of data, and much experience. Statistical treatment of these EPR data (statistical distributions and parameter correlations), has led to ...
K. Polikreti, Y. Maniatis
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Fullerene-based triplet spin labels: methodology aspects for pulsed dipolar EPR spectroscopy
Physical Chemistry Chemical Physics, 2022Triplet states of photoexcited organic molecules are promising spin labels with advanced spectroscopic properties for pulsed dipolar electron paramagnetic resonance (PD EPR) spectroscopy.
Ivan O. Timofeev +7 more
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EPR Spin Trapping of Oxygen Radicals in Plants: A Methodological Overview
Annals of the New York Academy of Sciences, 2005Abstract: We present a brief account of the difficulties involved in detection of oxygen free radicals in plants and give a rationale for using the EPR spin trapping technique in such studies. Comparative analysis of characteristics of different spin traps is given, having in mind their suitability in trapping oxygen‐centered free radicals.
Goran, Bacić, Milos, Mojović
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Detection and characterisation of radicals in biological materials using EPR methodology
Biochimica et Biophysica Acta (BBA) - General Subjects, 2014Electron paramagnetic resonance (EPR) spectroscopy (also known as electron spin resonance, ESR, spectroscopy) is widely considered to be the "gold standard" for the detection and characterisation of radicals in biological systems.The article reviews the major positive and negative aspects of EPR spectroscopy and discusses how this technique and ...
Clare L, Hawkins, Michael J, Davies
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Journal of Magnetic Resonance, 2001
A versatile high-power pulse Q-band EPR spectrometer operating at 34.5--35.5 GHz and in a temperature range of 4--300 K is described. The spectrometer allows one to perform one- and two-dimensional multifrequency pulse EPR and pulse ENDOR experiments, as well as continuous wave experiments.
I, Gromov +5 more
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A versatile high-power pulse Q-band EPR spectrometer operating at 34.5--35.5 GHz and in a temperature range of 4--300 K is described. The spectrometer allows one to perform one- and two-dimensional multifrequency pulse EPR and pulse ENDOR experiments, as well as continuous wave experiments.
I, Gromov +5 more
openaire +2 more sources

