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低表面粗糙度軟性金屬網格透明電極開發(2/2)
Ho, Jeng-Rong
(PI)
機械工程學系
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Keyphrases
Ambient Environment
33%
Annual Turnover
33%
Arithmetic Mean
33%
Copper Mesh
33%
Direct Laser Writing
33%
Doped Tin Oxide
33%
Electrode Layer
33%
Fabrication Methods
66%
Fabrication Technology
33%
Flexible Substrate
100%
Functional Nanostructures
33%
Indium Tin Oxide
33%
Industry Partners
33%
Invisible
33%
Laser Scanning
33%
Lighting Process
33%
Low Surface Roughness
100%
Mass Production
33%
Mean Surface Roughness
33%
Mesh Sheet
33%
Metal Electrode
33%
Metal Mesh
33%
Metallic Printing
33%
OLED Applications
33%
Optoelectronic Applications
33%
Organic Thin Films
33%
Piercing
33%
Polymer Substrate
33%
Positioning Technology
33%
Pre-coating
33%
Printing Ink
33%
Printing Process
33%
Roll-to-roll Manufacturing
33%
Room Temperature
33%
Sheet Resistance
33%
Silver Mesh
33%
Surface Roughness Ra
33%
Taiwan
33%
Tin Fluorides
33%
Transparence
33%
Transparent Electrode
100%
Tunneling Effect
33%
Visible Spectrum
33%
XY Table
33%
Engineering
Ambient Environment
50%
Fabrication Method
50%
Flexible Substrate
100%
Indium-Tin-Oxide
50%
Line Width
50%
Mass Production
50%
Metal Mesh
50%
Multiphoton Lithography
50%
Nanomaterial
50%
Optoelectronics
50%
Printing Process
50%
Room Temperature
50%
Sheet Resistance
50%
Thin Films
50%
Tunnel Construction
50%
Material Science
Indium Tin Oxide
33%
Ink
33%
Linewidth
33%
Nanostructure
33%
Organic Light-Emitting Diode System
33%
Silver
33%
Surface Roughness
100%
Thin Films
33%
Tin Oxide
33%