Explore the science behind White Organic Light-Emitting Diodes (WOLEDs) - their structure, color creation methods, low-voltage breakthroughs, and future applications in displays and lighting.
Explore how scientists use advanced techniques to characterize and combat fouling in refinery heat exchangers, saving billions in energy costs and reducing environmental impact.
Exploring the critical role of inorganic chemistry in medical biochemistry, from essential elements to therapeutic applications.
Explore the revolutionary domain of covalent chemistry beyond molecules, where scientists are building extensive crystalline frameworks with unprecedented capabilities for energy storage, carbon capture, and drug delivery.
Explore how nanotechnology is revolutionizing medicine by delivering drugs and genetic therapies directly to diseased cells with unprecedented precision.
Discover how orderly arranged dipoles are engineering a near-perfect solid-electrolyte interphase to unlock the safe, long-life potential of lithium-metal batteries.
Discover how light-emitting and ROS-generating hybrid materials made of polyurea gels embedding molybdenum clusters are revolutionizing medical treatments and technology.
Discover how data mining of crystallographic data is challenging traditional oxidation state assignments and accelerating materials discovery.
Explore how metal-organic polymers and powder X-ray diffraction are revolutionizing materials science through structural transformations induced by thermal treatment.
Discover how inorganic crystalline materials control immune responses through their chemical properties, revolutionizing vaccine design and immunotherapy.