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Hay, M. A., Sarkar, A., Marriott, K. E.R., Wilson, C. , Rajaraman, G. and Murrie, M. (2019) Investigation of the magnetic anisotropy in a series of trigonal bipyramidal Mn(II) complexes. Dalton Transactions, 48(41), pp. 15480-15486. (doi: 10.1039/C9DT02187F) (PMID:31282505)

Hay, M. A., Craig, G. A., Bhaskaran, L., Nehrkorn, J., Ozerov, M., Marriott, K. E.R., Wilson, C. , Rajaraman, G., Hill, S. and Murrie, M. (2019) In-depth investigation of large axial magnetic anisotropy in monometallic 3d complexes using frequency domain magnetic resonance and ab initio methods: a study of trigonal bipyramidal Co(II). Chemical Science, 10(25), pp. 6354-6361. (doi: 10.1039/C9SC00987F) (PMID:31341591) (PMCID:PMC6601423)

Collet, A., Craig, G. A., Heras Ojea, M. J., Bhaskaran, L., Wilson, C. , Hill, S. and Murrie, M. (2018) Slow magnetic relaxation in a {CoIICoIII2} complex containing a high magnetic anisotropy trigonal bipyramidal CoII centre. Dalton Transactions, 47(28), pp. 9237-9240. (doi: 10.1039/C8DT01997E) (PMID:29953164)

Craig, G. A. et al. (2018) Probing the origin of the giant magnetic anisotropy in trigonal bipyramidal Ni(II) under high pressure. Chemical Science, 9(6), pp. 1551-1559. (doi: 10.1039/C7SC04460G)

Binns, J., Kamenev, K. V., Marriott, K. E.R., McIntyre, G. J., Moggach, S. A., Murrie, M. and Parsons, S. (2016) A non-topological mechanism for negative linear compressibility. Chemical Communications, 52(47), pp. 7486-7489. (doi: 10.1039/C6CC02489K)

Marriott, K. E.R., Bhaskaran, L., Wilson, C. , Ochsenbein, S. T., Hill, S. and Murrie, M. (2015) Pushing the limits of magnetic anisotropy in trigonal bipyramidal Ni(II). Chemical Science, 6(12), pp. 6823-6828. (doi: 10.1039/C5SC02854J) (PMID:28757973) (PMCID:PMC5508675)

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