Researchers using advanced imaging have discovered that when ions intercalate into graphite, the process can occur in sudden, avalanche-like bursts within individual particles. This reveals new intraparticle correlations that challenge conventional models of ion storage. The findings have important implications for improving the performance and lifespan of graphite anodes in lithium-ion batteries.
A new study published in Nature reveals that New Deal-era mortgage programs primarily benefited white borrowers, widening racial wealth gaps. The research highlights how federal housing policies systematically excluded minority communities, contributing to long-term economic inequality. This matters because it underscores historical roots of present-day disparities in homeownership and wealth.
A retraction note has been published for a paper that claimed human HDAC6 regulates DNA damage by sensing valine abundance. This retraction invalidates those findings and corrects the scientific record, impacting related fields such as epigenetics and cellular stress research.
Researchers have demonstrated a technique to switch the polarization direction perpendicularly in layered ferroelectric materials. This breakthrough could lead to more energy-efficient and high-density data storage devices by enabling novel switching dynamics.
Researchers discovered that mitochondrial metabolism and epigenetic changes work together to control the senescence-associated secretory phenotype (SASP), a key driver of aging and inflammation. This crosstalk reveals a new mechanism that could lead to therapies for age-related diseases.
Researchers have discovered that bacteria employ a wide range of pattern recognition receptors to sense conserved proteins from the core proteome of bacteriophages. This finding reveals a universal mechanism by which bacteria detect phage infections, offering new insights into bacterial immunity. Understanding this system could inform the development of phage-based therapies and combat antibiotic resistance.
Researchers have identified a new phenomenon called the piezochiral effect, which links the handedness of molecular structures to their ability to generate electricity under mechanical stress. Published in Nature, the finding could lead to more efficient sensors and energy-harvesting devices by exploiting chiral materials.
The article uses four charts to show how mosquitoes are expanding their geographic range due to climate change and urbanization. This trend increases the global risk of mosquito-borne diseases such as malaria and dengue fever.
An article argues that developing better drug delivery methods is essential for treating children with rare diseases. Current barriers prevent many promising therapies from reaching patients effectively. Overcoming these challenges could significantly improve outcomes for affected children.