Scientists from China have developed high-performance colloidal quantum-dot (CQD)  surface-emitting laser array based on ...
New research from the University of Oklahoma addresses and resolves light emission challenges commonly encountered in quantum ...
However, newly published research from the University of Oklahoma proves that adding a covering to one of these light sources, called a colloidal quantum dot, can cause them to shine without faltering ...
This issue features a theme on colloidal quantum dots, bringing together primary research findings and overviews, along with articles on the commercialization of this technology. It is a commonly ...
Flowing quantum dot solutions enhance heat dissipation, enabling stable high-speed pulsed operation and tunable color output for next-generation optical devices.
The use of colloidal quantum dots in bioanalytics and biolabeling has emerged as one of the most promising areas of application for these artificial nanoscale crystals. Despite the early potential ...
A new publication from Opto-Electronic Sciences; DOI   10.29026/oes.2025.240028 , discusses eco-friendly quantum-dot ...
Quantum light is often unstable. It can flicker like stars or fade out like a weak flashlight. But new research from the University of Oklahoma has found a way to make it shine steadily for long ...
In a paper titled "Recycling self-assembled colloidal quantum dot supraparticle lasers," published in the journal Optical Materials Express, the Strathclyde researchers describe how they recycled ...
New research by Curtin University has achieved a breakthrough in eco-friendly display technology, creating highly efficient ...
Colloidal quantum dots are often referred to as artificial atoms, primarily because of their atom-like electron energy spectrum. Like atoms, they can form ordered structures that are commonly ...
However, newly published research from the University of Oklahoma proves that adding a covering to one of these light sources, called a colloidal quantum dot, can cause them to shine without ...