Case ID: M25-056P^

Published: 2025-09-22 09:12:40

Last Updated: 1759307117


Inventor(s)

Jian Li

Technology categories

Advanced Materials/NanotechnologyPhysical ScienceSemiconductor DevicesSemiconductors, Materials & Processes

Licensing Contacts

Physical Sciences Team

Enhancing Luminescent Properties of Vapor-Deposited Perovskite Films Through Vapor Exposure

The industry of perovskite materials has been highly sought out for next generation technology and devices. Perovskite thin films have been used in a large array of applications including light-emitting diodes (LEDs), solar cells, lasers and photodetectors. However, within recent years the widely existing defects (from significant intrinsic point defects to a mass of surface imperfections introduced during the fabrication process) in the metal halide perovskites have limited photoluminescence efficiency and stability.
 
Professor Jian Li at Arizona State University has developed a method to enhance vapor-deposited perovskite films by exposing them to specific organic or air-based vapors that chemically bind and suppress vacancy defects, resulting in highly stable, defect-free films with dramatically improved photoluminescence efficiency. This process utilizes exposure to various organic solvents and controlled air conditions, achieving up to a tenfold increase in light emission efficiency. Additionally, the technology enables the fabrication of full-color OLED displays by integrating doped perovskite films as color converters, reducing reliance on costly manufacturing components like shadow masks and enabling high-resolution, cost-effective display production.
 
This novel and robust approach enables the production of high-quality, defect-free perovskites with excellent photoluminescence efficiency, color purity and long-term stability.
 
Potential Applications
  • Next-generation lighting and display technologies
  • Photoluminescent devices and sensors
  • High-performance OLED displays
Benefits and Advantages
  • Cost Efficient – OLED display fabrication that minimizes shadow mask usage
  • Effective – Significant enhancement of photoluminescence and light emission efficiency and stability
  • Flexible- Dynamic OLED fabrication methods enabling high-resolution displays
  • Can be performed in an RGB OLDED based full color display, or more cost effectively in a blue OLED display
  • Enhances the optical properties of perovskites