In the waters off South Korea, a modest sea sponge produces a molecule so unusual that chemists spent 14 years trying to make ...
Using catalytic chemistry, researchers at Institute of Science Tokyo have achieved dynamic control of artificial membranes, enabling life-like membrane behavior. The work is published in the Journal ...
LifeTracer uses machine learning to spot subtle molecular patterns that separate biological chemistry from nonliving organics ...
University of Cambridge scientists have gotten an unprecedented glimpse at chemical reactions in real-time, thanks to a new molecule-sized "camera." The device offers a far simpler way of monitoring ...
Researchers have developed principles and technologies of nanofluidic devices to freely manipulate nanomaterials, biomaterials, and molecules at the single-molecule level using fundamental ...
What if a surface could instantly switch from sticky to slippery at the push of a button? By using electricity to control how ...
Like plucking a tiny guitar string, scientists have “strummed” chemical bonds. Plucking the bonds, which connect two carbon atoms separated by just 140 billionths of a millimeter, required a minuscule ...
“CRISPR is an elegant bioengineered system derived from bacteria that has reshaped the gene-editing field and earned the 2022 ...
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