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Cerium

All articles tagged with #cerium

Lab Fireball Experiments Unravel Fallout Particle Chemistry
science2 months ago

Lab Fireball Experiments Unravel Fallout Particle Chemistry

Lawrence Livermore researchers used a one-meter plasma flow reactor to heat uranium, cesium, and cerium (a plutonium stand-in) to about 5,000 K and observe how these elements condense as a simulated nuclear fireball cools under two cooling histories. Uranium and cerium condensed early in both scenarios, while cesium condensed later and formed more complex compounds when cooling was slower. These results could improve models for interpreting nuclear debris and help infer past conditions from fallout, though the setup is simplified and does not reproduce actual nuclear reactions. The work, published by Dhaoui et al. in Analytical Chemistry (2026), suggests moving beyond equilibrium models to capture cooling-rate effects and could extend to other high-temperature environments.

"Unraveling the Origins of Cerium in the Universe: A Scientific Investigation"
science2 years ago

"Unraveling the Origins of Cerium in the Universe: A Scientific Investigation"

Scientists at CERN's Neutron Time-of-Flight facility have conducted a study to investigate the production of cerium in stars. Their findings, published in Physical Review Letters, reveal discrepancies between theoretical models and observational data, indicating a need to revise the mechanisms responsible for cerium production in the universe. The study's results have significant astrophysical implications, suggesting a 20% reduction in the contribution of certain processes to the abundance of cerium in the universe and requiring a paradigm shift in the theory of cerium nucleosynthesis.

Cerium boosts visible light absorption of titanium dioxide.
science-and-technology3 years ago

Cerium boosts visible light absorption of titanium dioxide.

Researchers from the Chinese Academy of Sciences have improved visible light absorption in Ce/TiO2 by doping cerium in the TiO2 lattice, resulting in a high photocurrent density and better separation efficiency of photogenerated electrons and holes. The study presents a practical strategy for developing efficient visible light-activated rare earth-doped photocatalysts. Ce doping into the TiO2 lattice improved the separation efficiency of photogenerated electrons and holes, resulting in high photocurrent density and incident photon current efficiency (IPCE).