Jason B. Love
Affiliations: | University of Edinburgh, Edinburgh, Scotland, United Kingdom |
Area:
molecular inorganic chemistryGoogle:
"Jason Love"Mean distance: 12.11 | S | N | B | C | P |
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Publications
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Obey TJN, Nichol GS, Love JB. (2024) Controlled and sequential single-electron reduction of the uranyl dication. Dalton Transactions (Cambridge, England : 2003). 53: 16229-16240 |
van Rees K, Rajeshkumar T, Maron L, et al. (2022) Role of the Meso Substituent in Defining the Reduction of Uranyl Dipyrrin Complexes. Inorganic Chemistry |
van Rees K, Hield EK, Carpentier A, et al. (2022) Exploring the Redox Properties of Bench-Stable Uranyl(VI) Diamido-Dipyrrin Complexes. Inorganic Chemistry. 61: 3249-3255 |
Carrick A, Doidge E, Bouch A, et al. (2021) Simple Amides and Amines for the Synergistic Recovery of Rhodium from Hydrochloric Acid by Solvent Extraction. Chemistry (Weinheim An Der Bergstrasse, Germany) |
van Rees K, Love JB. (2021) Synthesis and complexes of a constrained-cavity Schiff-base dipyrrin macrocycle. Dalton Transactions (Cambridge, England : 2003). 50: 1610-1613 |
Donnelly LJ, Parsons S, Morrison CA, et al. (2020) Synthesis and structures of anionic rhenium polyhydride complexes of boron-hydride ligands and their application in catalysis. Chemical Science. 11: 9994-9999 |
Cowie BE, Douair I, Maron L, et al. (2020) Selective oxo ligand functionalisation and substitution reactivity in an oxo/catecholate-bridged U/U Pacman complex. Chemical Science. 11: 7144-7157 |
Giordano N, Beavers CM, Kamenev KV, et al. (2020) Pressure-induced inclusion of neon in the crystal structure of a molecular Cu(pacman) complex at 4.67 GPa. Chemical Communications (Cambridge, England) |
Donnelly LJ, Parsons S, Morrison CA, et al. (2020) Synthesis and structures of anionic rhenium polyhydride complexes of boron–hydride ligands and their application in catalysis Chemical Science. 11: 9994-9999 |
Zegke M, Zhang X, Pidchenko I, et al. (2019) Differential uranyl(v) oxo-group bonding between the uranium and metal cations from groups 1, 2, 4, and 12; a high energy resolution X-ray absorption, computational, and synthetic study. Chemical Science. 10: 9740-9751 |