Origins of the odd optical observables in plutonium and americium tungstates

Author:

Cross Justin N.1234,Lee Tsung-Han5678,Kang Chang-Jong5678ORCID,Yao Yong-Xin91011128,Cary Samantha K.1234,Stritzinger Jared T.1234,Polinski Matthew J.1314158,McKinley Carla D.1316178ORCID,Albrecht Schmitt Thomas E.1316178ORCID,Lanata Nicola5181920ORCID

Affiliation:

1. Chemistry Division and the Plutonium Science and Manufacturing Directorate

2. Los Alamos National Laboratory

3. Los Alamos

4. 87545 USA

5. Department of Physics and Astronomy

6. Rutgers University

7. Piscataway

8. USA

9. Department of Physics and Astronomy and Ames Laboratory

10. U.S. Department of Energy

11. Iowa State University

12. Ames

13. Department of Chemistry and Biochemistry

14. Bloomsburg University of Pennsylvania

15. Bloomsburg

16. Florida State University

17. Tallahassee

18. Aarhus University

19. Aarhus C

20. Denmark

Abstract

A series of f-block tungstates show atypical coloration for both the Ce(iii) and Pu(iii) compounds; whereas the other lanthanide and Am(iii) compounds possess normal absorption features. The different optical properties are actually derived from the tungstate component rather than from 5f electrons/orbitals.

Funder

Basic Energy Sciences

Villum Fonden

Publisher

Royal Society of Chemistry (RSC)

Subject

General Chemistry

Reference79 articles.

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3. New evidence for 5f covalency in actinocenes determined from carbon K-edge XAS and electronic structure theory

4. Homoleptic Cerium(III) and Cerium(IV) Nitroxide Complexes: Significant Stabilization of the 4+ Oxidation State

5. Covalency in f-element complexes

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