What's interesting about the achievements of these two groups is that they demonstrate that integration of colloidal quantum dot optoelectronics with silicon backplane electronics is practical ...
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 ...
as flexible electronics, tiny sensors, thinner solar cells and encrypted quantum communication. Bawendi has followed an interdisciplinary research program that has probed the science and technology of ...
The use of colloidal quantum dots in bioanalytics and biolabeling has emerged as one of the most promising ... planar form of a carbon nanotube therefore has become an extremely interesting candidate ...
So far, colloidal quantum dot materials to access the SWIR regime are mostly based on lead sulfide and mercury telluride compounds, imposing major regulatory concerns for their deployment in consumer ...
A new technique for growing quantum dots has not only found a new, more efficient way to build a useful type of quantum dot, but also opened up a whole group of novel chemical materials for future ...
With this in mind, a group of scientists led by the Islamic Azad University in Iran has conducted a series of simulations to investigate the potential for colloidal perovskite quantum dot (PQD ...
Colloidal solutions of gallium arsenide quantum dots of the type used in lasers, TVs, solar cells, medical devices, and other electronics glow under UV light. These were grown using a groundbreaking ...
This could shed light on properties of unique materials that may be used to create faster or more powerful electronics. Quantum computers hold the promise to emulate complex materials, helping ...