Benchmarking Uranyl Peroxide Capsule Chemistry in Organic Media
Invited for the cover of this issue is research led by May Nyman at Oregon State University in collaboration with scientists at the University of Notre Dame, Indiana, USA. The cover image depicts the transfer of uranyl peroxide clusters from an aqueous phase to an organic phase in a nuclear power pl...
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Published in | European journal of inorganic chemistry Vol. 2017; no. 1; p. 2 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
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Abstract | Invited for the cover of this issue is research led by May Nyman at Oregon State University in collaboration with scientists at the University of Notre Dame, Indiana, USA. The cover image depicts the transfer of uranyl peroxide clusters from an aqueous phase to an organic phase in a nuclear power plant cooling tower, showing how the fundamental science of actinides is related to the industrial nuclear fuel cycle.
Stabilization of unstable or previously undiscovered clusters in the organic phase is another exciting aspect of these new extractions…
Read more about the story behind the cover in the Cover Profile and about the research itself on page 39 ff (DOI:10.1002/ejic.201601219). |
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AbstractList | Invited for the cover of this issue is research led by May Nyman at Oregon State University in collaboration with scientists at the University of Notre Dame, Indiana, USA. The cover image depicts the transfer of uranyl peroxide clusters from an aqueous phase to an organic phase in a nuclear power plant cooling tower, showing how the fundamental science of actinides is related to the industrial nuclear fuel cycle.
Stabilization of unstable or previously undiscovered clusters in the organic phase is another exciting aspect of these new extractions…
Read more about the story behind the cover in the Cover Profile and about the research itself on page 39 ff (DOI:10.1002/ejic.201601219). Abstract Invited for the cover of this issue is research led by May Nyman at Oregon State University in collaboration with scientists at the University of Notre Dame, Indiana, USA. The cover image depicts the transfer of uranyl peroxide clusters from an aqueous phase to an organic phase in a nuclear power plant cooling tower, showing how the fundamental science of actinides is related to the industrial nuclear fuel cycle. Invited for the cover of this issue is research led by May Nyman at Oregon State University in collaboration with scientists at the University of Notre Dame, Indiana, USA. The cover image depicts the transfer of uranyl peroxide clusters from an aqueous phase to an organic phase in a nuclear power plant cooling tower, showing how the fundamental science of actinides is related to the industrial nuclear fuel cycle. Invited for the cover of this issue is research led by May Nyman at Oregon State University in collaboration with scientists at the University of Notre Dame, Indiana, USA. The cover image depicts the transfer of uranyl peroxide clusters from an aqueous phase to an organic phase in a nuclear power plant cooling tower, showing how the fundamental science of actinides is related to the industrial nuclear fuel cycle. Stabilization of unstable or previously undiscovered clusters in the organic phase is another exciting aspect of these new extractions... Read more about the story behind the cover in the Cover Profile and about the research itself on page 39 ff (DOI: 10.1002/ejic.201601219 ). |
Author | Szymanowski, Jennifer Burns, Peter C. Neal, Harrison A. Nyman, May Fein, Jeremy B. |
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Snippet | Invited for the cover of this issue is research led by May Nyman at Oregon State University in collaboration with scientists at the University of Notre Dame,... Abstract Invited for the cover of this issue is research led by May Nyman at Oregon State University in collaboration with scientists at the University of... |
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SubjectTerms | Actinides Benchmarking Clusters Cooling towers Nuclear fuels Nuclear power plants Peroxides Stabilization |
Title | Benchmarking Uranyl Peroxide Capsule Chemistry in Organic Media |
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