Plutonium coordination and redox chemistry with the CyMe4-BTPhen polydentate N-donor extractant ligand

Author:

Reilly Sean D.123ORCID,Su Jing123ORCID,Keith Jason M.123,Yang Ping123ORCID,Batista Enrique R.123ORCID,Gaunt Andrew J.123ORCID,Harwood Laurence M.4567ORCID,Hudson Michael J.4567,Lewis Frank W.45678ORCID,Scott Brian L.123ORCID,Sharrad Clint A.910117ORCID,Whittaker Daniel M.910117ORCID

Affiliation:

1. Los Alamos National Laboratory

2. Los Alamos

3. USA

4. Department of Chemistry

5. University of Reading

6. Whiteknights

7. UK

8. Department of Applied Sciences

9. School of Chemical Engineering and Analytical Science

10. The University of Manchester

11. Manchester

Abstract

Complexation of Pu(iv) with the actinide extractant CyMe4-BTPhen (2,9-bis(5,5,8,8-tetramethyl-5,6,7,8-tetrahydro-1,2,4-benzotriazin-3-yl)-1,10-phenanthroline) was studied experimentally and by computational analysis.

Funder

Basic Energy Sciences

Publisher

Royal Society of Chemistry (RSC)

Subject

Materials Chemistry,Metals and Alloys,Surfaces, Coatings and Films,General Chemistry,Ceramics and Composites,Electronic, Optical and Magnetic Materials,Catalysis

Reference13 articles.

1. P. D. Wilson , The Nuclear Fuel Cycle, From Ore to Waste , Oxford University Press , Oxford, United Kingdom , 1996

2. Potential Benefits and Impacts of Advanced Nuclear Fuel Cycles with Actinide Partitioning and Transmutation, NEA No. 6894, OECD, Nuclear Energy Agency (NEA), Paris, 2011

3. Radioactive waste partitioning and transmutation within advanced fuel cycles: Achievements and challenges

4. Highly Efficient Separation of Actinides from Lanthanides by a Phenanthroline-Derived Bis-triazine Ligand

5. Plutonium Loading of Prospective Grouped Actinide Extraction (GANEX) Solvent Systems based on Diglycolamide Extractants

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