Skip to main navigation
Skip to search
Skip to main content
Ben-Gurion University Research Portal Home
Help & FAQ
Link opens in a new tab
Search content at Ben-Gurion University Research Portal
Home
Profiles
Research output
Research units
Prizes
Press/Media
Student theses
Projects
Activities
Datasets
Research Labs
Full Water Splitting Electrolyzed by Cu-Co Bimetallic Phosphides
Dyuti Bandyopadhyay
, Sirshendu Ghosh
, Lothar Houben
, Ronen Bar-Ziv
,
Maya Bar-Sadan
Department of Chemistry
Research output
:
Contribution to journal
›
Article
›
peer-review
28
Scopus citations
Overview
Fingerprint
Fingerprint
Dive into the research topics of 'Full Water Splitting Electrolyzed by Cu-Co Bimetallic Phosphides'. Together they form a unique fingerprint.
Sort by
Weight
Alphabetically
Keyphrases
Overall Water Splitting
100%
Cu-Co
100%
Bimetallic Phosphide
100%
Electrocatalyst
33%
Water Splitting Reaction
33%
Surface Morphology
16%
Catalytic Site
16%
Anodic Potential
16%
Surface Restructuring
16%
Complex Structure
16%
Structure Function
16%
Functional Materials
16%
Energy Applications
16%
Oxygen Evolution Reaction
16%
Altered Morphology
16%
High Catalytic Activity
16%
Solid Solution
16%
Hydrogen Evolution Reaction
16%
Alkaline Solution
16%
Adsorption Sites
16%
HER Performance
16%
Bifunctional Electrocatalyst
16%
Phase Transformation
16%
Oxide Growth
16%
Phosphide
16%
Colloidal Chemistry
16%
Valence State
16%
Volmer
16%
Water Cleavage
16%
Oxyhydroxides
16%
Material Science
Water Splitting
100%
Oxygen Enhancement Ratio
100%
Open Educational Resources
100%
Electrocatalysts
66%
Oxide Compound
33%
Functional Material
33%
Oxygen Evolution
33%
Catalysis
33%
Catalyst Activity
33%
Hydrogen Evolution
33%
Solid Solutions
33%
Bifunctional Electrocatalysts
33%
Catalyst
33%
Chemistry
Water Splitting
100%
Oxygen Enhancement Ratio
100%
Electrocatalyst
66%
Chemistry
33%
Catalysis
33%
Surface Area
33%
Dioxygen
33%
Bifunctional Electrocatalyst
33%
Catalyst Activity
33%
Solid Solution
33%
Complex Formation
33%
Catalyst
33%
Hydrogen
33%
Oxide
33%
Phase Transition
33%
Chemical Engineering
Open Educational Resources
100%
Oxygen Enhancement Ratio
100%
Hydrogen
33%
Oxide
33%