Scientists from the National Graphene Institute at the University of Manchester and Sun Yat-sen University have captured the growth of semiconducting tellurium nanostructures in liquid in real time, ...
A team led by Professor Seo Dae-ha of the Department of Physics and Chemistry at DGIST (President Lee Kun-woo) has developed new real-time microscopy technology and successfully observed the behavior ...
Scientists from the National Graphene Institute at The University of Manchester and Sun Yat-sen University, have captured the growth of semiconducting tellurium nanostructures in liquid in real time, ...
Protein translocation is an essential, nano-scale dynamic process that facilitates the movement of proteins across cellular membranes, enabling them to reach specific locations within the cell or to ...
When trying to measure molecular structures with nanometer precision, every bit of noise shows up in the data: someone walking past the microscope, tiny vibrations in the building and even the traffic ...
Researchers have built a tiny, lightweight microscope that captures neuron activity with unprecedented speed that can be used in freely moving animals. The new tool could give scientists a more ...
Using artificial intelligence, engineers have developed a new way to watch the inner workings of living cells in real time. The process both captures images that are twice as sharp as conventional ...
Atomic force microscopy (AFM) is a cornerstone technique for nanoscale manipulation, and has applications in nanoparticle assembly, biomolecule handling, semiconductor device manufacturing, etc.
Light Publishing Center, Changchun Institute of Optics, Fine Mechanics And Physics, CAS A team of researchers led by Yuan Xin from Westlake University and Shi Liping from Xidian University has ...
Scientists captured tellurium nanowire growth in liquid in real time, showing seed formation, material competition and bismuth-assisted deposition. (Nanowerk News) Scientists from the National ...