Thursday, 30 Apr 2026
Subscribe
logo logo
  • Global
  • Technology
  • Business
  • AI
  • Cloud
  • Edge Computing
  • Security
  • Investment
  • More
    • Sustainability
    • Colocation
    • Quantum Computing
    • Regulation & Policy
    • Infrastructure
    • Power & Cooling
    • Design
    • Innovations
  • šŸ”„
  • data
  • revolutionizing
  • Stock
  • Investment
  • Future
  • Secures
  • Growth
  • Top
  • Funding
  • Power
  • Center
  • technology
Font ResizerAa
Silicon FlashSilicon Flash
Search
  • Global
  • Technology
  • Business
  • AI
  • Cloud
  • Edge Computing
  • Security
  • Investment
  • More
    • Sustainability
    • Colocation
    • Quantum Computing
    • Regulation & Policy
    • Infrastructure
    • Power & Cooling
    • Design
    • Innovations
Have an existing account? Sign In
Follow US
Ā© 2022 Foxiz News Network. Ruby Design Company. All Rights Reserved.
Silicon Flash > Blog > Innovations > Breakthrough in Red Quantum LED Technology: Engineers Reach Record 31% Efficiency for Enhanced Display Color and Brightness
Innovations

Breakthrough in Red Quantum LED Technology: Engineers Reach Record 31% Efficiency for Enhanced Display Color and Brightness

Published November 9, 2025 By Juwan Chacko
Share
5 Min Read
Breakthrough in Red Quantum LED Technology: Engineers Reach Record 31% Efficiency for Enhanced Display Color and Brightness
SHARE
A breakthrough in quantum rod light-emitting diodes (QR-LEDs) has been achieved by a research team at The Hong Kong University of Science and Technology (HKUST). This advancement sets a new efficiency record for red QR-LEDs, promising enhanced display color and brightness for future electronic devices.

A research team led by the School of Engineering of The Hong Kong University of Science and Technology (HKUST) has made significant advances in quantum rod light-emitting diodes (QR-LEDs), setting record-high efficiency level for red QR-LEDs. This innovation is poised to revolutionize next-generation display and lighting technologies, offering smartphone and television users a vibrant and enhanced visual experience. The research is published in the journal Advanced Materials.

Contents
Revolutionizing LED TechnologyConclusion

Revolutionizing LED Technology

LEDs have been widely used in electronic products for decades. Recent developments in quantum materials have given rise to quantum dot LEDs (QD-LEDs) and QR-LEDs. QD-LEDs offer superior color purity (color vividness) and higher brightness compared to current mainstream LEDs. However, outcoupling efficiency has now become the primary obstacle, as it sets a fundamental ceiling for external quantum efficiency (EQE), thereby hindering any further performance improvements.

Overcoming Technical Challenges

Quantum rods, on which QR-LEDs are based, are a type of elongated anisotropic nanocrystals with unique optical properties that can be engineered to optimize the light emission direction and ultimately improve outcoupling efficiency. However, QR-LEDs encounter two significant technical challenges: first, the ratio of emitted to absorbed photons (photoluminescence quantum yield) is relatively low after the material absorbs photons; second, there is a substantial leakage current due to poor thin-film quality.

See also  Northstar acquires Compass Quantum to expand modular edge and defense solutions

To address these challenges, a research team led by Prof. Abhishek K. Srivastava, Associate Professor of the Department of Electronic and Computer Engineering (ECE), focused on boosting optical performance of QR-LEDs via refined synthesis engineering. They achieved an excellent photoluminescence quantum yield of up to 92% for both green and red quantum rods, along with uniform size distribution and shape confinement, all of which are essential for optimizing QR-LED performance.

Breakthrough Results

In previous studies, the carrier leakage caused by irregular quantum rod films and its impact on diminishing the light coupling efficiency of QR-LEDs has often been overlooked. To tackle this issue, the team built an equivalent circuit model that illustrates the detrimental effects of leakage current in traditional QR-LED structures.

This model provided valuable insights into the device’s operation, enabling the formulation of targeted solutions to suppress current leakage. By strategically transforming the QR-LED device structure, the team achieved a dual breakthrough: simultaneously enhancing balanced carrier injections and suppressing leakage current.

The results were remarkable—the optimized red QR-LEDs achieved a peak EQE of 31% and a peak brightness of 110,000 cd m⁻², setting a new record in previous red QR-LED research. Moreover, to validate the universality of their strategies, the team applied the same approach to green ā€œdot-in-rodā€ quantum rods.

The green devices also yielded impressive results, reaching a peak EQE of 20.2% and an ultra-high luminance of 250,000 cd m⁻². These outcomes not only demonstrate the effectiveness of the innovations but also highlight their potential for application across different color variants of QR-LEDs.

See also  Revolutionizing Multi-Core Processors: The Power of Terahertz Beams and Quantum-Inspired Receivers

Prof. Srivastava, the corresponding author of the study, remarked, ā€œPrevious QD-LED research primarily focused on optimizing quantum dot structures for high efficiency, but this approach does not apply to elongated shaped quantum rods, such as QR-LED.

ā€œBy utilizing equivalent circuit models and quantum rod micromorphology, we revealed that QR-LEDs have widespread pinholes due to their shape, which leads to critical leakage currents—an issue not encountered in tightly packed QD-LEDs. By modifying the device structure, we addressed the quality issues in the emissive layer and verified the fundamental advantages of quantum rods over quantum dots. This work is set to guide research on similar anisotropic nanocrystals and advance their commercial applications.ā€

Conclusion

The research conducted by the HKUST team represents a significant leap forward in QR-LED technology, paving the way for enhanced display color and brightness in electronic devices. With their groundbreaking results and innovative approach, the team has set a new efficiency standard that has the potential to reshape the future of LED technology.

More information:
Zebing Liao et al, Inverted Device Engineering for Efficient and Bright Quantum Rod LEDs, Advanced Materials (2025). DOI: 10.1002/adma.202504559

Provided by Hong Kong University of Science and Technology




TAGGED: breakthrough, Brightness, Color, Display, efficiency, Engineers, enhanced, Led, Quantum, Reach, Record, Red, technology
Share This Article
Facebook LinkedIn Email Copy Link Print
Previous Article 365 Data Centers and Robot Network’s Collaboration on Private Cloud AI Solutions 365 Data Centers and Robot Network’s Collaboration on Private Cloud AI Solutions
Next Article Unveiling Berkshire Hathaway’s Strong Financial Performance: 3 Key Insights from the Latest Quarterly Report Unveiling Berkshire Hathaway’s Strong Financial Performance: 3 Key Insights from the Latest Quarterly Report
Leave a comment

Leave a Reply Cancel reply

Your email address will not be published. Required fields are marked *

Your Trusted Source for Accurate and Timely Updates!

Our commitment to accuracy, impartiality, and delivering breaking news as it happens has earned us the trust of a vast audience. Stay ahead with real-time updates on the latest events, trends.
FacebookLike
LinkedInFollow

Popular Posts

GeekWire’s Top Picks: The Hottest Stories of the Week – Aug. 24, 2025

Get up to speed with the latest updates in technology and startup news from the…

September 1, 2025

Belden Senior Vice President Offloads Shares for $689,000

Original Blog Summary: Brian Anderson, a senior executive at Belden, sold 5,601 shares of the…

July 18, 2025

Unveiling the Intrigue: A Sneak Peek with Zendaya and Robert Pattinson

Discover the intrigue behind The Drama, a mysterious upcoming film featuring Zendaya and Robert Pattinson…

December 10, 2025

StorONE Unveils All-in-One Enterprise AI Storage Solution

Summary: ONEai integrates GPU for AI processing, eliminating the need for separate AI stacks and…

June 25, 2025

NVIDIA’s Enhanced Blackwell Servers: Revolutionizing AI and Robotics Technology

Summary: 1. NVIDIA is set to release the RTX PRO 6000 Blackwell Server Edition GPU…

August 12, 2025

You Might Also Like

Empowering Innovation: The Role of Design Enablement Teams in the European Chips Act
Innovations

Empowering Innovation: The Role of Design Enablement Teams in the European Chips Act

Juwan Chacko
Record High Imports in 2025: Is the U.S. Trade Deficit Tariff-Proof?
Investments

Record High Imports in 2025: Is the U.S. Trade Deficit Tariff-Proof?

SiliconFlash Staff
Potential for Vornado Realty Trust to Reach New Heights with These Key Factors in Place
Investments

Potential for Vornado Realty Trust to Reach New Heights with These Key Factors in Place

Juwan Chacko
Secure Access: Biometric Passwordless Login and EU Digital Wallet Protection Platform
Innovations

Secure Access: Biometric Passwordless Login and EU Digital Wallet Protection Platform

Juwan Chacko
logo logo
Facebook Linkedin Rss

About US

Silicon Flash: Stay informed with the latest Tech News, Innovations, Gadgets, AI, Data Center, and Industry trends from around the world—all in one place.

Top Categories
  • Technology
  • Business
  • Innovations
  • Investments
Usefull Links
  • Home
  • Contact
  • Privacy Policy
  • Terms & Conditions

Ā© 2025 – siliconflash.com – All rights reserved

Welcome Back!

Sign in to your account

Lost your password?