PHOTONICS TECHNOLOGIES USING THIN-FILM MATERIALS

Looking for a light-based technology using Thin-Film Materials as Technology source? Choose PhotonTransfer as your comprehensive source for photonics technologies related to Thin-Film Materials . Check out the latest opportunities and new technologies involved in the development of Thin-Film Materials . If you're a physicist, engineer, applied scientist, company or product developer there is something here for you.

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30 listings found
Refractive Index Tuning of Electro-Optic Self-Assembled Superlattices

REFRACTIVE INDEX TUNING OF ELECTRO-OPTIC SELF-ASSEMBLED SUPERLATTICES

Tech for Transfer

TTO

20-01-2016

A 'wet-chemical' process affording molecule-based electro-optic material refractive index tuning in self-assembled superlattice organic structures.

Glass & other optical materials   Semiconductors   Thin-Film Materials
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Fabrication of Optical-Quality Facets By Selective Epitaxial Growth

FABRICATION OF OPTICAL-QUALITY FACETS BY SELECTIVE EPITAXIAL GROWTH

Tech for Transfer

TTO

20-01-2016

A bottom-up fabrication technique that relies on epitaxial growth and is radically different from cleaving or top-down chemical etching, and is compatible with integration processes.

Semiconductors   Thin-Film Materials
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Electrochromic Window with High Reflectivity Modulation

ELECTROCHROMIC WINDOW WITH HIGH REFLECTIVITY MODULATION

Tech for Transfer

TTO

20-01-2016

A multi-layered, active, thin film, solid-state electrochromic device with a high reflectivity and transmissivity modulation and a low absorptivity in the near-IR.

Glass & other optical materials   Electrochemistry   Thin-Film Materials
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Liquid-Liquid-Solid Electrochemistry for Production of High Quality Semiconductors

LIQUID-LIQUID-SOLID ELECTROCHEMISTRY FOR PRODUCTION OF HIGH QUALITY SEMICONDUCTORS

Tech for Transfer

TTO

21-01-2016

New method for production of high-purity Group IV Semiconductors using liquid-liquid-solid electrochemical deposition of crystalline Germanium (Ge) without the need for a template.

Semiconductors   Electrochemistry   Thin-Film Materials
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Low-Cost Methods of Modifying Surfaces for Biomedical Applications

LOW-COST METHODS OF MODIFYING SURFACES FOR BIOMEDICAL APPLICATIONS

Tech for Transfer

TTO

21-01-2016

Novel and simple means to modify and pattern chemical functionality at polymer surfaces to build molecular assemblies with confined positions for thin-film device fabrication.

Glass & other optical materials   Thin-Film Materials
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Printing graphene cathodes on optoelectronic and photovoltaic devices

PRINTING GRAPHENE CATHODES ON OPTOELECTRONIC AND PHOTOVOLTAIC DEVICES

Tech for Transfer

TTO

22-01-2016

Process for lamination of graphene as cathode material onto photovoltaic and optoelectronic devices that allows the manufacture of completely organic, metal-free optoelectronic devices such as solar cells.

Photovoltaics   Optoelectronics   Thin-Film Materials
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Corrosion-Resistant Electroplating Laser Technique

CORROSION-RESISTANT ELECTROPLATING LASER TECHNIQUE

Tech for Transfer

TTO

22-01-2016

Method that greatly improves the efficiency and uniformity of plating/etching materials naturally coated by thin films by using laser oxide removal of the interfering thin film on any exposed surface, followed immediately by immersion plating or etching.

Photovoltaics   Thin-Film Materials
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LEDs using Cubic Gallium Nitride Materials Grown on Grooved Silicon

LEDS USING CUBIC GALLIUM NITRIDE MATERIALS GROWN ON GROOVED SILICON

Tech for Transfer

TTO

22-01-2016

New method to grow and fabricate semiconductor devices using cubic GaN materials that combines metal-organic chemical vapor deposition (MOCVD) with large area nanoscale interferometric lithography. It can be applied to various semiconductor devices such as light emitting diodes (LEDs), laser diodes, photodetectors and transistors.

Light sources   Optoelectronics   Semiconductors   Thin-Film Materials
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Completely Integrated Microwave Receiver

COMPLETELY INTEGRATED MICROWAVE RECEIVER

Tech for Transfer

HiTech

03-02-2016

Miniaturized microwave receiver that can be integrated on a chip. With only a single multilayer of thin-film material, it can achieve the same performance as a conventional EM wave receiver. The device can also operate without external power supply, as it can convert EM energy into a DC voltage.

Optoelectronics   Thin-Film Materials
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Plasmonic Graphene Transparent Conductors for Thin-Film Photovoltaic and Optoelectronic Devices

PLASMONIC GRAPHENE TRANSPARENT CONDUCTORS FOR THIN-FILM PHOTOVOLTAIC AND OPTOELECTRONIC DEVICES

Tech for Transfer

Hidden author

19-02-2016

A novel low-cost method for fabricating high-performance plasmonic graphene for use in thin-film photovoltaic devices and other optoelectronics.

Glass & other optical materials   Nanophotonics   Optical Components & Devices   Plasmonics   Photovoltaics   Thin-Film Materials
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International Year of Light 2015