Researchers developed an organelle-mimetic ZIF-67/CoS/CdS nanoreactor that directs photogenerated charges to co-produce ...
The first high-performance tabletop AATAS system tracks coherent electron dynamics in noble gas ions with attosecond ...
Precigenetics uses semiconductor manufacturing techniques for observing living cells. This approach allows real-time drug ...
The collaboration brings together Bioxytran’s proprietary Artificial Super Intelligence (ASI) driven drug design platform with the University of Minnesota’s expertise in structural biology and nuclear ...
We developed a miniaturized, ultrasensitive photoacoustic spectroscopy gas sensor by integrating a thermally drawn multi-material optoelectronic fiber, a T-type resonant photoacoustic cell, and a MEMS ...
Researchers have developed and tested an infrared spectroscopy system that can rapidly detect chemical aerosols from a ...
A newly developed optical spectrometer reimagines how light spectra are measured, enabling laboratory-grade performance in a compact, low-cost device. Credit: University of Cambridge, image generated ...
A new high-tech spectrometer is helping Ohio University researchers see the unseen. By revealing molecular structures with extraordinary precision, the instrument is poised to accelerate discoveries ...
Researchers from the University of Cambridge and GlitterinTech, a startup founded by the same research group, have unveiled a fundamentally new type of optical spectrometer that delivers ...
WALTHAM, Mass.--(BUSINESS WIRE)--Thermo Fisher Scientific Inc., the world leader in serving science, today expanded its suite of Thermo Scientific™ Orbitrap™ mass spectrometry platforms, AI-enabled ...
A new AI-powered chip from UC Davis can analyze light and chemicals using a device tiny enough to fit almost anywhere. By combining smart silicon sensors with machine learning, it achieves lab-style ...