Structure and dynamics of the molten alkali-chloride salts from an X-ray, simulation, and rate theory perspective

Author:

Roy Santanu1234ORCID,Wu Fei564,Wang Haimeng784ORCID,Ivanov Alexander S.1234ORCID,Sharma Shobha564,Halstenberg Phillip12345ORCID,Gill Simerjeet K9104,Milinda Abeykoon A. M.11104ORCID,Kwon Gihan11104ORCID,Topsakal Mehmet9104,Layne Bobby12104,Sasaki Kotaro12104ORCID,Zhang Yong784,Mahurin Shannon M.1234ORCID,Dai Sheng12345ORCID,Margulis Claudio J.564ORCID,Maginn Edward J.784ORCID,Bryantsev Vyacheslav S.1234ORCID

Affiliation:

1. Chemical Sciences Division

2. Oak Ridge National Laboratory

3. Oak Ridge

4. USA

5. Department of Chemistry

6. The University of Iowa

7. Department of Chemical and Biomolecular Engineering

8. University of Notre Dame

9. Nuclear Science and Technology Department

10. Brookhaven National Lab

11. National Synchrotron Light Source II (NSLS-II)

12. Chemistry Division

Abstract

Molten salts are of great interest as alternative solvents, electrolytes, and heat transfer fluids in many emerging technologies.

Funder

U.S. Department of Energy

Publisher

Royal Society of Chemistry (RSC)

Subject

Physical and Theoretical Chemistry,General Physics and Astronomy

Reference121 articles.

1. F. Lantelme and H.Groult , Molten salts chemistry, from lab to applications , Elsevier , 1st edn, 2013

2. L. Wagner , in Future Energy , ed. T. M. Letcher , Elsevier , Boston , 2nd edn, 2014 , pp. 613–631

3. M. W. Rosenthal , P. R.Kasten and R. B.Briggs , Nuclear Applications and Technology , 1970 , vol. 8, pp. 107–117

4. Evaluation of Salt Coolants for Reactor Applications

5. Measurement of standard potentials of actinides (U,Np,Pu,Am) in LiCl–KCl eutectic salt and separation of actinides from rare earths by electrorefining

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