A Composite of Two Dimensional Material and One Dimensional Material as Transparent Conductor
- 詳細技術說明
- Professor Duan and colleagues have synthesized a transparent conductor exhibiting low overall sheet resistance and uniform surface conductivity based on the combination of a network of 1D (such as silver nanowires) and 2D nanomaterials (such as graphene or indium tin oxide). Transparent conductors based on 1D networks of nanowires offer low sheet resistance but typically do not form continuous or uniformly conductive surfaces while 2D films based on graphene (both solution processed and chemical vapor deposition grown) offer uniform surfaces but unsatisfactory sheet resistance. In this technology, UCLA researchers developed a transparent conductor with excellent uniform surface conductivity, and low overall sheet resistance that can be readily coated onto a variety of rigid and flexible substrates such as glass and plastic. The technology has wide applications for touchscreens, thin film solar cells, and organic light emitting diodes (OLEDs).
- *Abstract
-
None
- *Principal Investigation
-
Name: Xiangfeng Duan
Department:
- 其他
-
Additional Technologies by these Inventors
- Graphene Nanomesh As A Continuous Semiconducting Thin Film For Large Scale Field Effect Transistors
- Vertical Heterostructures for Transistors, Photodetectors, and Photovoltaic Devices
- Graphene Moisture-Resistive Membrane Cathode for Li-Air Battery in Ambient Conditions
- Conductor-Semiconductor Composite Films and Their Applications for High Performance Transistors
- Chemical Vapor Deposition Growth of the Large Single Crystalline Domains of Monolayer and Bilayer
- Graphene Based Catalysts for Biomimetric Generation of Antithrombotic Species
- Palladium Alloy Hydride Nano Materials
- High Performance Thin Films from Solution Processible Two-Dimensional Nanoplates
- Nanoscale Optical Voltage Sensors
- Ultrafine Nanowires As Highly Efficient Electrocatalysts
- Pore Size Engineering Of Porous Carbons Using Covalent Triazine Frameworks As Precursors
- The Method of Enhanced Pressure Sensing Performance for Pressure Sensors
- Very High Energy Density Silicide-Air Primary Batteries
- Wafer Scale Growth Of Large Arrays Of Perovskite Micro-Plate Crystals For Functional Electronics And Optoelectronics
- Three-Dimensional Holey Graphene Frameworks Based High-Performance Supercapacitors
- High Performance PtNiCuMo Electrochemical Catalyst
- Graphene Nanomesh As A Glucose Sensor
- Upconversion Plasmonic Mapping: A Direct Plasmonic Visualization And Spectrometer-Free Sensing Method
- Electrochemical Molecular Intercalation for Synthesis of Monolayer Atomic Crystal Molecular Superlattices
Tech ID/UC Case
24565/2012-213-0
Related Cases
2012-213-0
- 國家/地區
- 美國

欲了解更多信息,請點擊 這裡