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 ...
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 ...
Colloidal quantum dots are solution-based nanocrystals prized for their unique light-harvesting abilities. They can illuminate, create color, harness solar energy and function as semiconductors. These ...
Colloidal quantum dots (QDs) constitute a platform to explore various quantum effects. Their size-dependent colors are essentially a naked-eye, ambient-condition visualization of the quantum ...
(Courtesy: Dillon H Downie, University of Strathclyde) Researchers at the University of Strathclyde, UK, have developed a new method to recycle the valuable semiconductor colloidal quantum dots used ...
He was one of the initial developers of the field of colloidal quantum dots, with his work spanning from fundamental studies of nanomaterials to their applications. His laboratory at MIT has advanced ...
One approach to developing blue lasers entails the use of colloidal quantum dots (CQDs). These are nanoscale semiconducting particles with unique optical properties associated with their size.
They are created by combining quantum dots in a solution that allows them ... and it should be applicable to any colloidal nanoparticle species, especially rare-earth ones.” ...
Researchers at the University of Sevilla in Spain have fabricated a ligand-free solar cell based on colloidal perovskite quantum dots (CPDTs) that has shown a power conversion efficiency of 9.3% ...
Colloidal nanoparticles are particles that operate at the nanoscale, specifically between 1 to 1000 nanometers, suspended in a fluid. These nanoparticles can consist of various materials, such as ...