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Using Redox-Active Ligands to Generate Actinide Ligand Radi..:
Shane S. Galley (4803630)
;
Scott A. Pattenaude (1573963)
;
Debmalya Ray (4252861)
...
https://figshare.com/articles/journal_contribution/Using_Redox-Active_Ligands_to_Generate_Actinide_Ligand_Radical_Species/16685538. , 2021
Link:
https://doi.org/10.1021/acs.inorgchem.1c01766.s001
RT Journal T1
Using Redox-Active Ligands to Generate Actinide Ligand Radical Species
UL https://suche.suub.uni-bremen.de/peid=base-ftsmithonian:oai:figshare.com:article_16685538&Exemplar=1&LAN=DE A1 Shane S. Galley (4803630) A1 Scott A. Pattenaude (1573963) A1 Debmalya Ray (4252861) A1 Carlo Alberto Gaggioli (1402807) A1 Megan A. Whitefoot (8430189) A1 Yusen Qiao (4910902) A1 Robert F. Higgins (2543287) A1 W. L. Nelson (11485113) A1 Ryan Baumbach (1493194) A1 Joseph M. Sperling (4803636) A1 Matthias Zeller (526374) A1 Tyler S. Collins (5052614) A1 Eric J. Schelter (1317186) A1 Laura Gagliardi (1279068) A1 Thomas E. Albrecht-Schönzart (9109999) A1 Suzanne C. Bart (1360347) YR 2021 K1 Biophysics K1 Biochemistry K1 Molecular Biology K1 Physiology K1 Pharmacology K1 Biotechnology K1 Ecology K1 Chemical Sciences not elsewhere classified K1 sizable bonding overlap K1 ray crystallography showed K1 early actinides show K1 h nmr spectroscopy K1 electronic absorption spectroscopy K1 ligand 2p orbitals K1 active dioxophenoxazine ligand K1 oxidized quinone form K1 1 </ sup K1 h </ K1 one ligand K1 f orbitals K1 electronic structures K1 active ligands K1 tert </ K1 two ligands K1 tetra -< K1 squid magnetometry K1 species using K1 reduced semiquinone K1 rare example K1 olate ) K1 magnetic data K1 full characterization K1 first example K1 >- phenoxazine K1 >- butyl JF https://figshare.com/articles/journal_contribution/Using_Redox-Active_Ligands_to_Generate_Actinide_Ligand_Radical_Species/16685538 LK http://dx.doi.org/https://doi.org/10.1021/acs.inorgchem.1c01766.s001 DO https://doi.org/10.1021/acs.inorgchem.1c01766.s001 SF ELIB - SuUB Bremen
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