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  1. 2021
  2. Substrate anchoring and flexibility reduction in CYP153AM.aq leads to highly improved activity towards octanoic acid

    Grogan, G. J., Rowlinson, B., Sharma, M., Zukic, E., Hauer, B., Rapp, L., Marques, S. & Damborsky, J., 24 Feb 2021

    Article in ACS Catalysis

  3. The Impact of the Counterion in the Performance of Ionic Hydrotropes

    Abranches, D. O., Benfica, J., Soares, B., Ana M, F., Sintra, T. E., Shimizu, S. & Coutinho, J. A. P., 17 Feb 2021

    Article in Chemical Communications

  4. Cysteine Nucleophiles in Glycosidase Catalysis: Application of a Covalent β-L-Arabinofuranosidase Inhibitor

    McGregor, N. G. S., Coines, J., Borlandelli, V., Amaki, S., Artola, M., Nin‐Hill, A., Linzel, D., Yamada, C., Arakawa, T., Ishiwata, A., Ito, Y., van der Marel, G. A., Codée, J. D. C., Fushinobu, S., Overkleeft, H. S., Rovira, C. & Davies, G. J., 2 Feb 2021

    Article in Angewandte Chemie International Edition

  5. Chiral titanium(IV) and vanadium(V) salen complexes as catalysts for carbon dioxide and epoxide coupling reactions

    Kuznetsova, S. A., Gorodishch, I. V., Gak, A. S., Zherebtsova, V. V., Gerasimov, I. S., Medvedev, M. G., Kitaeva, D. K., Khakina, E. A., North, M. & Belokon, Y. N., 13 Jan 2021

    Article in Tetrahedron

  6. Using Purely Sinusoidal Voltammetry for Rapid Inference of Surface-Confined Electrochemical Reaction Parameters

    Lloyd-Laney, H. O., Yates, N. D. J., Robinson, M. J., Hewson, A. R., Firth, J. D., Elton, D. M., Zhang, J., Bond, A. M., Parkin, A. & Gavaghan, D. J., 8 Jan 2021

    Article in Analytical Chemistry

  7. Quenching of single-particle strength from direct reactions with stable and rare-isotope beams

    Aumann, T., Barbieri, C., Bazin, D., Bertulani, C. A., Bonaccorso, A., Dickhoff, W. H., Gade, A., Gómez-Ramos, M., Kay, B. P., Moro, A. M., Nakamura, T., Obertelli, A., Ogata, K., Paschalis, S. & Uesaka, T., 7 Jan 2021

    Review article in Progress in Particle and Nuclear Physics

  8. 2020
  9. Experimental and Theoretical Study of the OH-Initiated Degradation of Piperazine under Simulated Atmospheric Conditions

    Tan, W., Zhu, L., Mikoviny, T., Nielsen, C. J., Wisthaler, A., D'Anna, B., Antonsen, S., Stenstrøm, Y., Farren, N. J., Hamilton, J. F., Boustead, G. A., Brennan, A. D., Ingham, T. & Heard, D. E., 30 Dec 2020

    Article in Journal of Physical Chemistry A

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