Biblio

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Journal Article
Gd(iii) and Mn(ii) complexes for dynamic nuclear polarization: small molecular chelate polarizing agents and applications with site-directed spin labeling of proteins, M. Kaushik, Bahrenberg, T., Can, T. V., Caporini, M. A., Silvers, R., Heiliger, J., Smith, A. A., Schwalbe, H., Griffin, R. G., and Corzilius, B., , Phys. Chem. Chem. Phys., vol. 18, pp. 27205–27218, 2016.
Heteronuclear proton assisted recoupling, G. De Paëpe, Lewandowski, J. R., Loquet, A., Eddy, M. T., Megy, S., Böckmann, A., and Griffin, R. G., , The Journal of Chemical Physics, vol. 134, p. 095101, 2011.
High Field Dynamic Nuclear Polarization NMR with Surfactant Sheltered Biradicals, M. K. Kiesewetter, Michaelis, V. K., Walish, J. J., Griffin, R. G., and Swager, T. M., , The Journal of Physical Chemistry B, vol. 118, pp. 1825–1830, 2014.
High field dynamic nuclear polarization—the renaissance, R. G. Griffin and Prisner, T. F., , Physical Chemistry Chemical Physics, vol. 12, p. 5737, 2010.
High Frequency Dynamic Nuclear Polarization, Q. Zhe Ni, Daviso, E., Can, T. V., Markhasin, E., Jawla, S. K., Swager, T. M., Temkin, R. J., Herzfeld, J., and Griffin, R. G., , Accounts of Chemical Research, vol. 46, pp. 1933–1941, 2013.
High frequency dynamic nuclear polarization: New directions for the 21st century, R. G. Griffin, Swager, T. M., and Temkin, R. J., , Journal of Magnetic Resonance, 2019.
High Resolution Structural Characterization of Aβ42Amyloid Fibrils by Magic Angle Spinning NMR, M. T. Colvin, Silvers, R., Frohm, B., Su, Y., Linse, S., and Griffin, R. G., , Journal of the American Chemical Society, vol. 137, pp. 7509–7518, 2015.
High-Field Dynamic Nuclear Polarization with High-Spin Transition Metal Ions, B. Corzilius, Smith, A. A., Barnes, A. B., Luchinat, C., Bertini, I., and Griffin, R. G., , Journal of the American Chemical Society, vol. 133, pp. 5648–5651, 2011.
High-Field13C Dynamic Nuclear Polarization with a Radical Mixture, V. K. Michaelis, Smith, A. A., Corzilius, B., Haze, O., Swager, T. M., and Griffin, R. G., , Journal of the American Chemical Society, vol. 135, pp. 2935–2938, 2013.
High-Frequency Dynamic Nuclear Polarization, M. L. Mak-Jurkauskas and Griffin, R. G., , Encyclopedia of Magnetic Resonance, 2010.
High-frequency dynamic nuclear polarization using biradicals: A multifrequency EPR lineshape analysis, K. - N. Hu, Song, C., Yu, H. -hua, Swager, T. M., and Griffin, R. G., , The Journal of Chemical Physics, vol. 128, p. 052302, 2008.
Highly branched and loop-rich gels via formation of metal–organic cages linked by polymers, A. V. Zhukhovitskiy, Zhong, M., Keeler, E. G., Michaelis, V. K., Sun, J. E. P., Hore, M. J. A., Pochan, D. J., Griffin, R. G., Willard, A. P., and Johnson, J. A., , Nature Chemistry, vol. 8, pp. 33–41, 2015.
High-Resolution MAS NMR Analysis of PI3-SH3 Amyloid Fibrils: Backbone Conformation and Implications for Protofilament Assembly and Structure, M. J. Bayro, Maly, T., Birkett, N. R., MacPhee, C. E., Dobson, C. M., and Griffin, R. G., , Biochemistry, vol. 49, pp. 7474–7484, 2010.
High-Resolution Solid-State NMR Structure of a 17.6 kDa Protein, I. Bertini, Bhaumik, A., De Paëpe, G., Griffin, R. G., Lelli, M., Lewandowski, J. R., and Luchinat, C., , Journal of the American Chemical Society, vol. 132, pp. 1032–1040, 2010.
High-resolution solid-state NMR structure of Alanyl-Prolyl-Glycine, A. B. Barnes, Andreas, L. B., Huber, M., Ramachandran, R., van der Wel, P. C. A., Veshtort, M., Griffin, R. G., and Mehta, M. A., , Journal of Magnetic Resonance, vol. 200, pp. 95–100, 2009.
In situ High-Field Dynamic Nuclear Polarization-Direct and Indirect Polarization of 13C nuclei, T. Maly, Miller, A. - F., and Griffin, R. G., , ChemPhysChem, vol. 11, pp. 999–1001, 2010.
In Situ Temperature-Jump Dynamic Nuclear Polarization: Enhanced Sensitivity in Two Dimensional13C−13C Correlation Spectroscopy in Solution, C. - G. Joo, Casey, A., Turner, C. J., and Griffin, R. G., , Journal of the American Chemical Society, vol. 131, pp. 12–13, 2009.
Insight into the Mechanism of Inactivation of Ribonucleotide Reductase by Gemcitabine 5′-Diphosphate in the Presence or Absence of Reductant, E. Artin, Wang, J., Lohman, G. J. S., Yokoyama, K., Yu, G., Griffin, R. G., Bar, G., and Stubbe, J. A., , Biochemistry, vol. 48, pp. 11622–11629, 2009.
In-Situ Characterization of Pharmaceutical Formulations by Dynamic Nuclear Polarization Enhanced MAS NMR, Q. Zhe Ni, Yang, F., Can, T. V., Sergeyev, I. V., D’Addio, S. M., Jawla, S. K., Li, Y., Lipert, M. P., Xu, W., Williamson, R. Thomas, Leone, A., Griffin, R. G., and Su, Y., , The Journal of Physical Chemistry B, vol. 121, no. 34, pp. 8132-8141, 2017.
Intermolecular Alignment in β2-Microglobulin Amyloid Fibrils, G. T. Debelouchina, Platt, G. W., Bayro, M. J., Radford, S. E., and Griffin, R. G., , Journal of the American Chemical Society, vol. 132, pp. 17077–17079, 2010.
Intermolecular Structure Determination of Amyloid Fibrils with Magic-Angle Spinning and Dynamic Nuclear Polarization NMR, M. J. Bayro, Debelouchina, G. T., Eddy, M. T., Birkett, N. R., MacPhee, C. E., Rosay, M., Maas, W. E., Dobson, C. M., and Griffin, R. G., , Journal of the American Chemical Society, vol. 133, pp. 13967–13974, 2011.
Lipid bilayer-bound conformation of an integral membrane beta barrel protein by multidimensional MAS NMR, M. T. Eddy, Su, Y., Silvers, R., Andreas, L., Clark, L., Wagner, G., Pintacuda, G., Emsley, L., and Griffin, R. G., , Journal of Biomolecular NMR, vol. 61, pp. 299–310, 2015.
Lipid Dynamics and Protein–Lipid Interactions in 2D Crystals Formed with the β-Barrel Integral Membrane Protein VDAC1, M. T. Eddy, Ong, T. - C., Clark, L., Teijido, O., van der Wel, P. C. A., Garces, R., Wagner, G., Rostovtseva, T. K., and Griffin, R. G., , Journal of the American Chemical Society, vol. 134, pp. 6375–6387, 2012.
Long-Range Correlations between Aliphatic13C Nuclei in Protein MAS NMR Spectroscopy, M.  J. Bayro, Maly, T., Birkett, N.  R., Dobson, C.  M., and Griffin, R. G., , Angewandte Chemie International Edition, vol. 48, pp. 5708–5710, 2009.
Low-Temperature Polymorphic Phase Transition in a Crystalline Tripeptidel-Ala-l-Pro-Gly·H2O Revealed by Adiabatic Calorimetry, A. V. Markin, Markhasin, E., Sologubov, S. S., Ni, Q. Zhe, Smirnova, N. N., and Griffin, R. G., , The Journal of Physical Chemistry B, vol. 119, pp. 1787–1792, 2015.

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