The global carbon nanomaterials market is experiencing rapid growth, poised to revolutionize sectors like energy storage, electronics, and healthcare through innovations in materials such as graphene, ...
Researchers have developed a noninvasive method to create light anywhere in the body. Their technique, which uses ultrasound waves to activate light-emitting nanoparticles, could be used to manipulate ...
Cryo-transmission electron microscopy (cryo-TEM) allows us to observe samples in a preserved state that is close to their native form, making it a highly effective way to examine biological samples.
Nanomaterials are, as defined by Standford University's Environmental Health & Safety Department as "materials with a minimum of one external dimension that ranges in size between 1-100 nanometers [2.
Rapid industrialization, agricultural expansion, and urbanization release vast quantities of harmful pollutants into global ...
Light has an increasing number of applications in biology and medicine—it can be used to stimulate cell growth, manipulate ...
This starts at the chemical level: scientists can design a material’s structure to define how it reacts, binds, or transforms under specific conditions. Surface functionalization adds further ...
Andrew Maynard argues against defining engineered nanomaterials for regulatory purposes (Nature 475, 31; 2011). But such a definition is urgently needed, especially for particulate nanomaterials. The ...
Nanomaterials are poised for widespread use in the construction industry, where they can offer significant advantages for a variety of applications ranging from making more durable concrete to ...
Researchers at Stanford have developed a noninvasive method to create light anywhere in the body. Their technique, which uses ultrasound waves to activate light-emitting nanoparticles, could be used ...