Exploring how inflammasomes regulate HMGB1's transformation from nuclear architect to immunological danger signal, with implications for treating autoimmune diseases, stroke, and cancer.
Discover how scientists use the Electrochemical Quartz Crystal Microbalance (EQCM) to study ultra-thin platinum catalysts for methanol fuel cells in alkaline solutions.
Exploring oxidative alkaline leaching techniques to remove americium-241 from nuclear waste sludge, reducing long-term radiotoxicity.
Discover how Linköping University researchers study protein structures and interactions to develop new treatments for diseases like cancer and Alzheimer's.
Exploring the frontier of soft-nanocomposites where nanoparticles and nanocarbons combine with intelligent gels to create revolutionary smart materials.
Exploring how organic bioelectronics bridges the gap between electronic devices and biological systems for precise cellular communication.
Exploring how calcium treatment affects dissolved organic matter dynamics at Hubbard Brook Experimental Forest
Exploring the invisible microbial processes and climate factors that govern Earth's sulfur cycle and its critical role in ecosystem health.
Exploring single-molecule electron transfer studies in biological systems and their revolutionary implications for science and technology.
Discover how Australia's CRC LEME decoded the secrets of regolith, leading to billion-dollar mineral discoveries and environmental breakthroughs.