A narrative review of two decades of nanotoxicology research shows how particle size, surface chemistry, protein corona ...
Researchers developed a multilayer MCOF@Au@PEI nanomaterial that captures bacteria, converts near-infrared light into heat, ...
AI is increasingly being used across precision oncology to accelerate drug discovery, predict resistance, and guide the ...
Researchers developed a coaxial core-shell nanofiber separator that combines high thermal stability with substantial stretch ...
Researchers developed an edge-supported nano-thick epidermal electronics platform that combines an approximately 500 nm ...
The A-110 PIglide Linear Stage combines air bearing guidance, direct-drive motor technology, and high-resolution encoder feedback in a compact positioning platform for applications where smooth motion ...
Researchers developed a scalable silicon microneedle electrode using mechanical dicing, KOH etching, and nanostructured ...
Researchers developed a potentially scalable metallurgical route that converts crystalline boron into dispersible, amorphous ...
Biomass-derived green nanomaterials offer a renewable approach to removing persistent pollutants through adsorption, ...
Unlike traditional treatments, nanoparticles (NPs) are highly precise in targeting diseased cells at the molecular level, enhancing the effectiveness of treatments for conditions like cancer, diabetes ...
Nanotechnology involves the science and engineering of manipulating matter at the nanoscale (1–100 nm). At this scale, materials exhibit unique chemical, physical, and biological properties that ...
Gene editing techniques allow precise modifications of plant and animal genes, revolutionizing biomedical sciences. These techniques primarily involve introducing transgenes or CRISPR into plants or ...