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Rubidium ion hydration in ambient and supercritical water
J. L. Fulton
, D. M. Pfund
, S. L. Wallen
, M. Newville
, E. A. Stern
, Yanjun Ma
Pacific Northwest National Laboratory
University of Washington
Research output
:
Contribution to journal
›
Article
›
peer-review
126
Scopus citations
Overview
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Dive into the research topics of 'Rubidium ion hydration in ambient and supercritical water'. Together they form a unique fingerprint.
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Keyphrases
Ambient Water
100%
Supercritical Condition
100%
Supercritical Water
100%
Ion Hydration
100%
Rubidium Ion
100%
X-ray Absorption Fine Structure
66%
High Temperature
33%
Well-defined
33%
Ambient Conditions
33%
Water Solution
33%
Structure Analysis
33%
Structure Measurement
33%
Hydration Shell
33%
Supercritical Region
33%
Contact Ion Pair
33%
First Hydration Shell
33%
Hydrogen-rich Water
33%
Hydration Water
33%
Hydrogen Bonds (H-bonds)
33%
Rubidium Bromide
33%
Chemistry
Rubidium Ion
100%
Supercritical Condition
100%
Cation
66%
Hydrogen Bonding
33%
Contact Ion Pair
33%
Engineering
Supercritical Condition
100%
Ray Absorption
66%
Ambient Condition
33%
Ion Pair
33%
Material Science
Hydrogen Bonding
100%
Rubidium Ion
100%