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Incorporation of protons and hydroxide species in BaZrO
3
and BaCeO
3
Andrew J.E. Rowberg
, Meng Li
, Tadashi Ogitsu
, Joel B. Varley
Idaho National Laboratory
Integrated Energy Technologies
Research output
:
Contribution to journal
›
Article
›
peer-review
20
Scopus citations
Overview
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Dive into the research topics of 'Incorporation of protons and hydroxide species in BaZrO
3
and BaCeO
3
'. Together they form a unique fingerprint.
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Keyphrases
Proton
100%
Hydroxide
100%
BaZrO3
100%
BaCeO3
100%
Wet Condition
66%
Solid Fuel
33%
Grain Boundary
33%
Electrolyte
33%
High Conductivity
33%
Oxygen Vacancy
33%
Proton-conducting Oxide
33%
Electrolytic Cell
33%
Energy Barrier
33%
Synthesis Conditions
33%
Density Functional Theory
33%
High Ionic Conductivity
33%
Protonation
33%
Interstitial Oxygen
33%
Yttrium
33%
Migration Barrier
33%
Low Partial Pressure
33%
All-solid-state
33%
Defect Formation Energy
33%
Native Defects
33%
Energy Concentration
33%
Ionic Conduction
33%
Water Vapor
33%
Barium Cerate
33%
Defect-rich
33%
Gas Conditions
33%
Energy Migration
33%
H2 Gas
33%
H-condition
33%
Acceptor Dopant
33%
Seed Material
33%
Typical Operating Conditions
33%
Alternative Process
33%
Material Science
Barium
100%
Surface (Surface Science)
50%
Doping (Additives)
50%
Density
50%
Oxide Compound
50%
Grain Boundary
50%
Alloying
50%
Oxygen Vacancy
50%
Ionic Conductivity
50%
Yttrium
50%
Zirconates
50%
Water Vapor
50%
Chemical Engineering
Barium Zirconate
100%