Skip to main navigation
Skip to search
Skip to main content
Bar-Ilan University Home
Help & FAQ
Link opens in a new tab
Search content at Bar-Ilan University
Home
Researchers
Organisations
Research output
Prizes
Student theses
Courses
Activities
Projects
Press/Media
Datasets
Equipment
n-CuInSe
2
photoelectrochemical cells
David Cahen
, Y. W. Chen
, R. Noufi
, R. Ahrenkiel
, R. Matson
, Micha Tomkiewicz
, Wu Mian Shen
Weizmann Institute of Science
National Renewable Energy Laboratory
City University of New York
Research output
:
Contribution to journal
›
Article
›
peer-review
22
Scopus citations
Overview
Fingerprint
Fingerprint
Dive into the research topics of 'n-CuInSe
2
photoelectrochemical cells'. Together they form a unique fingerprint.
Sort by
Weight
Alphabetically
Keyphrases
Photoelectrochemical Cell
100%
CuInSe2
100%
Polyiodides
66%
Chemical Composition
33%
Performance Improvement
33%
Electrolyte
33%
Cell Performance
33%
Liquid Electrolyte
33%
Electrode Surface
33%
Solid State
33%
Power Conversion Efficiency
33%
Solar Cell
33%
Air Oxidation
33%
Methanol
33%
Chemical Effect
33%
Basic Electrolyte
33%
Chemical Etching
33%
Photooxidation
33%
Etchant
33%
Defect States
33%
Physical Effects
33%
Charge Collection Efficiency
33%
Doping Density
33%
Indium Oxide Thin Films
33%
Electrochemical Decomposition
33%
In3+
33%
Non-aqueous Electrolyte
33%
Low Conductivity
33%
Acid Electrolyte
33%
Surface Composition
33%
Near Stoichiometric
33%
Fermi Level pinning
33%
Composition Studies
33%
Polysulfides
33%
EBIC
33%
Stabilization Strategies
33%
Material Science
Density
100%
Polysulfide
100%
Solar Cell
100%
Surface Structure
100%
Oxide Film
100%
Indium
100%
Photoelectrochemical Cell
100%
Chemical State
100%
Chemistry
Electrolyte Solution
100%
Photoelectrochemical Cell
100%
Fermi Level
50%
Indium
50%
Oxide
50%
formation
50%
Solar Cell
50%
Surface Structure
50%
Air Oxidation
50%
Photooxidation
50%