
Nanocrystals Help Magnesium Batteries Go On-the-Move
Magnesium metal anodes display improved cycling and temperature performance capabilities for rechargeable magnesium batteries.
Magnesium metal anodes display improved cycling and temperature performance capabilities for rechargeable magnesium batteries.
Researchers take cues from nature to form living materials with unprecedented control and versatility.
Researchers design self-assembling nanosheets that mimic the surface of cells.
A new catalyst design meets cost, activity, and durability goals by leveraging ultralow loadings of platinum with platinum-free supports.
New methods quiet noise and reduce error in measurements of elusive quantum properties
By mimicking biological machinery with non-biological parts, artificial cells work to convert light into chemical energy.
Interplanetary particles offer insights into the chemistry of the cosmos.
Scientists image complex superstructures self-assembled from tetrahedral quantum dots, expanding our understanding of forming small, complex crystals.
Ultrafast X-rays track how associated pairs of atoms find new locations when triggered by light.
A new path is identified to keep lithium in its place during battery discharge, benefitting efforts to design better energy storage options.
Models use a fraction of the computational cost of today’s best atom-based water models.
Discovery of novel polymers with extreme stretching, vibration suppression, and self-healing.