Charge density waves are a central feature of many quantum materials and often coexist or compete with other electronic ...
A hydrogel engineered with cell-like particles mimicking skin tissue achieves 99.9% compressibility and ultralow energy loss ...
Researchers have developed a new catalyst architecture that dramatically reduces the amount of expensive precious metals ...
Magnetic nanoparticles engineered T cells inside living mice and guided them into solid tumors, achieving over 90% tumor ...
Dual cross-linked polymer design enables soft artificial muscles with record work density and strain
A dual cross-linked magnetic polymer solves the fundamental trade-off limiting soft artificial muscles, achieving ...
Theta-phase tantalum nitride conducts heat nearly three times better than copper, opening new pathways for cooling ...
Early carbon light bulbs may have produced graphene, since applying voltage to carbon filaments mirrors what is now called ...
Taurine from octopus and squid neutralizes oxygen radicals that destroy perovskite solar cells, then regenerates to provide ...
A new quantum framework now accurately models nanocapacitors where standard physics fails, enabling precise design and ...
Researchers developed a MOF-based material that removes fluoride from water while giving a real-time visual signal, enabling ...
Researchers report a synthesis method enabling direct intercalation of many metal cations into layered titanates, enabling ...
An implantable scaffold and magnetic probes capture circulating tumor cells directly in the bloodstream, eliminating over 90% of captured cells in rabbits and goats.
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