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“Bottom-up” transparent electrodes
Ahiud Morag,
Raz Jelinek
Department of Chemistry
Research output
:
Contribution to journal
›
Review article
›
peer-review
18
Scopus citations
Overview
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Chemistry
Indium Tin Oxide
100%
Nanoparticle
50%
Liquid Film
50%
Structure
50%
Graphene
50%
Graphene Oxide
50%
Silver
50%
Far-Infrared Spectroscopy
50%
Carbon Material
50%
Carbon Nanotube
50%
Solar Cell
50%
Indium
50%
Lithography
50%
Engineering
Indium-Tin-Oxide
100%
Carbon Nanotube
50%
Graphene Oxide
50%
Graphene
50%
Lithography
50%
Nanoparticle
50%
Solar Cell
50%
Electro-Optics
50%
Building Block
50%
Electrical Conductivity
50%
Spectral Region
50%
Optical Transparency
50%
Consumer Product
50%
Material Science
Indium Tin Oxide
100%
Carbon Nanotube
50%
Film
50%
Nanoparticle
50%
Graphene
50%
Graphene Oxide
50%
Self Assembly
50%
Lithography
50%
Solar Cell
50%
Silver
50%
Electrical Conductivity
50%
Indium
50%
Electrode
50%
Keyphrases
Transparent Electrode
100%
Indium Tin Oxide
33%
Carbon Nanotubes
16%
Nanoparticles
16%
Electrical Conductivity
16%
High Cost
16%
Graphene
16%
Self-assembly
16%
Lithography
16%
Solar Cell
16%
Electro-optic
16%
Structural Flexibility
16%
Carbon Materials
16%
Consumer Products
16%
Common Materials
16%
Spectral Region
16%
Commercial Interests
16%
Indium
16%
Brittle Nature
16%
Electrode System
16%
Patterned Film
16%
Far-IR
16%
Route-based
16%
Optical Transparency
16%
Graphene-silver Nanocomposites
16%
Electrode Fabrication
16%
Bottom-up Strategy
16%
Top-down Technology
16%
Bottom-up Technology
16%
Product Touch
16%
Earth and Planetary Sciences
Indium
100%
Graphene
66%
Solar Cell
33%
Electrical Resistivity
33%
Carbon Nanotube
33%
Electro-Optics
33%
Self Assembly
33%
Top-Down Approach
33%
Silver Oxides
33%
Consumer Product
33%
Chemical Engineering
Indium
100%
Graphene
66%
Tin Oxide
66%
Nanoparticle
33%
Carbon Nanotube
33%
Lithography
33%
Silver Oxides
33%