Confocal microscope image of waveguided photoluminescence in a hexagonal boron nitride waveguide. The lobe-pattern around the edges is reminiscent of koi circling a pond. Image taken by Samuel ...
In a recent study, researchers developed modified norcorrole molecules whose side chains favored the formation of columnar -stacking structures. Using these compounds, they produced liquid crystals ...
In a paper recently published in the journal Light: Science & Applications, researchers revealed the quantum-mechanical effects in photoluminescence from thin monocrystalline gold flakes.
The public's appetite for inexpensive and powerful electronic devices continues to grow. While silicon-based semiconductors ...
A group of scientists from the University of New South Wales (UNSW), SMA Australia, and Gentari Solar Australia demonstrated a novel method for daylight photoluminescence (DPL) imaging using a ...
The Durable Module Materials consortium (DuraMAT) announced in its latest annual report the availability of new PV ...
The Dept. of Energy has announced more than $70 million in research and development selections to seed new technologies ...
The MicroTime 100 from PicoQuant is an idea tool for the study of time-resolved photoluminescence of solid samples such as wafers, semiconductors or solar cells. The system is based on a ...
Canadian research group has utilized for the first time a cadmium iodide doping technique to stabilize the blade coating ...
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Another intriguing aspect is the presence of silicon-vacancy color centers in the diamond structure, as an intense zero-phonon line at 738.5 nm in the photoluminescence spectrum excited by using a ...
EPFL researchers have developed the first comprehensive model of the quantum-mechanical effects behind photoluminescence in thin gold films; a discovery that could drive the development of solar ...