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NanoPrint Innovations

NanoPrint Innovations develops thin-film deposition systems that operate 100x faster than traditional vacuum-based techniques without requiring a vacuum chamber. This technology enables the scalable production of high-quality films for solar cells, semiconductor metal oxides, and recyclable food packaging barriers. The company provides deposition solutions tailored for both industrial manufacturing throughput and academic research requirements.

Cambridge, United KingdomFounded 20238300+ followers
Updated 3 months ago

Funding

Funding not disclosed

Funding rounds are not available yet.

Founders

Product

Problem

The production of thin films for applications like solar cells, graphene semiconductors, and food packaging often relies on vacuum-based deposition techniques, which are slow, expensive, and energy-intensive. These limitations hinder the scalability and affordability of advanced materials in various industries.

Solution

NanoPrint Innovations offers a high-speed, non-vacuum thin film deposition system for producing functional oxide coatings. This system achieves film quality and uniformity comparable to vacuum-based methods but operates significantly faster, reducing production time and costs. The technology enables the affordable and scalable manufacturing of advanced materials for solar cells, graphene semiconductors, and recyclable food packaging. NanoPrint Innovations provides systems tailored for both industrial manufacturing and academic research.

Target Audience

The primary customers are manufacturers of solar cells, graphene semiconductors, and sustainable food packaging, as well as academic researchers in materials science and nanotechnology.

Features

  • High-speed deposition of functional oxide coatings without the need for a vacuum chamber
  • Film quality and uniformity comparable to industrial vacuum-based techniques
  • Systems designed for both industrial manufacturing and academic research applications
  • Suitable for depositing passivation layers and transparent conducting layers for solar cells
  • Compatible with metal oxide integration for next-generation graphene semiconductors
  • Used for applying aluminum oxide layers for recyclable food packaging
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