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Hydrogen production with a simple and scalable membraneless electrolyzer
Glen D. O'Neil
, Corey D. Christian
, David E. Brown
, Daniel V. Esposito
Chemistry and Biochemistry
Research output
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Contribution to journal
›
Article
›
peer-review
93
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Scopus citations
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Keyphrases
Electrolyzers
100%
Membrane Electrode Assembly
100%
Hydrogen Production
100%
In Situ
50%
Electrolyte
50%
Gas Chromatography
50%
Electrode Surface
50%
Valuable Insight
50%
Flow-through
50%
High-speed Video
50%
Electrochemical Sensor
50%
Electrochemical Devices
50%
Bubble Evolution
50%
Gas Chromatography Analysis
50%
Minimal Product
50%
Video Measurement
50%
Acidic Solution
50%
Electrolysis
50%
3D Printing
50%
Electrochemical Flow Cell
50%
Cell Stack
50%
Membrane-less
50%
Agnostic
50%
Higher Heating Value
50%
In Situ Imaging
50%
Water Electrolysis
50%
Alkaline Solution
50%
Fluid Velocity
50%
Modularity
50%
Electrolysis Efficiency
50%
Ion-conducting Membranes
50%
Electrolyzer Design
50%
Engineering
Gas Chromatography
100%
Hydrogen Production
100%
Electrolyzer
100%
Electrode Surface
50%
Water Electrolysis
50%
Cell Body
50%
Cathode Body
50%
High Heating Value
50%
Electrochemical Sensor
50%
Fluid Velocity
50%
Alkaline Solution
50%
Flow Cell
50%
Three Dimensional Printing
50%
Material Science
Cathode
100%
Anode
100%
Gas Chromatography
100%
Surface (Surface Science)
50%
Electrochemical Device
50%
Three Dimensional Printing
50%
Electrochemical Sensor
50%
Chemical Engineering
Gas Chromatography
100%
Hydrogen Production
100%