Busted: Revealing Mismatches in MJO Modeling
Research uncovers the errors that prevent modeled precipitation variations from matching real-world results.
Research uncovers the errors that prevent modeled precipitation variations from matching real-world results.
Researchers reveal the factors that affect the stability of semiconductors in solar fuel devices to aid the discovery of next-generation materials.
Straining a thin film controllably allows tuning of the materials’ magnetic, electronic, and catalytic properties, essential for new energy and electronic devices.
Scientists identified defects responsible for detrimental blinking that limits nanoparticle use in LEDs, solar cells, and lasers.
Analyses reveal diversity in carbon turnover and other degradation processes, offering insights for biofuel production.
New approach could benefit applications as diverse as propeller and printers.
Scientists explain diverse results around a material that is both insulator and conductor and offer chemical roadmap to harness it.
Confining water in tiny straws confirms predicted rapid transport of protons along a water “wire”—vital for more efficient fuel cells.
Scientists determined new molecular-level information at the solid/liquid interface, pushing toward better energy storage devices.
Towards higher energy density batteries: singly charged lithium ions replaced by doubly charged magnesium ions.
Previously unobserved scattering shows unexpected sensitivity to bound electrons, providing new insights into x-ray interactions with matter and opening the door to new probes of matter.
Scientists discover another design principle for building nanostructures.