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QT

QNA Technology

QNA Technology develops and supplies surface-modified semiconductor nanomaterials, specifically colloidal quantum dots that emit blue light, for applications in optoelectronics and LED technology. Their materials are designed to eliminate heavy metals and rare elements, reducing energy consumption in devices while enabling efficient production through printing techniques.

Founded 2016262K+ followers
Updated 20 months ago

Funding

$4M raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.

NC
Funding rounds are not available yet.

Founders

Product

Problem

The optoelectronics and LED technology industries require high-performance, environmentally friendly nanomaterials for efficient and sustainable device production. Traditional quantum dots often contain heavy metals and rare elements, posing environmental concerns and limiting their applicability in eco-conscious applications.

Solution

QNA Technology develops and supplies surface-modified, colloidal quantum dots that emit blue light, designed to eliminate heavy metals and rare elements. These nanomaterials reduce energy consumption in optoelectronic devices and enable efficient production through printing techniques. By focusing on sustainable materials, QNA Technology enables the creation of high-performance LEDs and displays with a reduced environmental footprint. The surface modification process ensures that the quantum dots can be suspended in a wide range of solvents, facilitating their integration into various manufacturing processes, including ink development for printing applications.

Target Audience

The primary customers are manufacturers in the optoelectronics and LED technology industries seeking high-performance, environmentally friendly nanomaterials for displays, lighting, and other applications.

Features

  • Colloidal quantum dots emitting blue light, free from heavy metals and rare elements
  • Surface modification technology for suspension in various solvents
  • Development of inks for printing quantum dots onto surfaces
  • Materials designed to reduce energy consumption in optoelectronic devices
  • Suitable for use in displays, LED lighting, and photochemical applications
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