Explore how nitrogen-vacancy centers in diamond enable nanoscale temperature sensing with unprecedented precision for applications in electronics, biomedicine, and fundamental physics.
Discover how organohalide perovskites are revolutionizing solar energy with unprecedented efficiency gains and flexible applications.
Discover how Repton School Science Society students are using CRISPR-Cas9 gene editing technology to modify bacterial DNA in groundbreaking experiments.
Explore how fiber science documented in Sen'i Gakkaishi transforms textiles from molecular structures to sustainable innovations.
Discover how operando X-ray Photoelectron Spectroscopy is revolutionizing battery research by revealing the dynamic chemical evolution of the electrode-electrolyte interphase in real-time.
Discover how Operando Atom Probe technology enables real-time observation of iron oxidation at atomic scale with electric field assistance.
Exploring how viruses are revolutionizing catalyst design through protein engineering and nanoscale synthesis for sustainable chemical processes.
Explore how long-continued electric currents of low tension drive fundamental processes from rust prevention to battery charging through electrochemistry.
Explore the profound relationship between hydrogen and diamond, from atomic-scale interactions to technological applications in electronics and quantum computing.
Exploring electro-organic chemistry and redox-active biomolecules through a student's experimental journey with glucose sensing.