Carbon Quantum Dots Show Promise Against Drug-Resistant Biofilms
A new review details how fluorescent carbon quantum dots, engineered from sources as varied as garlic and fruit juice, can ...
A new review details how fluorescent carbon quantum dots, engineered from sources as varied as garlic and fruit juice, can ...
A new study maps how calcination temperatures from 300 to 900 degrees Celsius transform sol–gel synthesized titanium dioxide nanoparticles from ...
Cerium doping of sol-gel nickel-magnesium ferrite nanoparticles enhances magnetic, optical, dielectric and antibacterial properties, with the 0.07 composition showing the ...
Researchers in Iraq have built an AgBiS2-grafted sulfur-doped TiO2 nanohybrid that degrades 97.4 percent of the antibiotic norfloxacin within one ...
A new study shows that substituting small amounts of magnesium into sol-gel-synthesized zinc ferrite nanoparticles systematically tunes the crystal structure, ...
Drexel University-led researchers have demonstrated a scalable vapor-phase process for growing crystalline MXene directly from inexpensive industrial precursors, potentially transforming ...
Researchers have developed a low-temperature electroless deposition technique that grows strongly adhered ZnO re-entrant nanostructures on PVDF hollow fiber membranes, ...
A new review in the Journal of Nanoparticle Research details how carbon-based nanodots kill antibiotic-resistant bacteria and destroy protective biofilms ...
Researchers in Brazil have created luminescent gold nanoparticle-polypyrrole-europium nanocomposites in a single one-pot synthesis that could enhance future optoelectronic sensors.
Japanese researchers report that tiny concentrations of graphene flakes boost the infrared birefringence of liquid crystals by up to 50 ...
© 2025 Scienmag - Science Magazine
© 2025 Scienmag - Science Magazine