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An international scientific collaboration has developed a novel nanomaterial to efficiently harvest clean drinking water from ...
Hydrogen bonding between membrane helices gives stronger associations than the packing of surfaces in glycophorin A helices, creating an opportunity to stabilize structures, but also implying a ...
Featherlight nanomaterial built from graphene and calcium pulls clean water from the air with unmatched efficiency.
A study reveals a graphene oxide aerogel's exceptional water adsorption capabilities, paving the way for new technologies in atmospheric water generation.
Japanese researchers at the RIKEN Institute have developed a groundbreaking manganese-based catalyst that significantly ...
Can the vast and sparsely populated African country translate its renewable power potential into national development?
It may be considered as forming a bond between them, known as the hydrogen bond. Although the hydrogen bond is not strong, recent investigations have shown it to be of very wide occurrence.
A new international research collaboration has developed a nanomaterial that can efficiently extract clean drinking water ...
With a strength-to-weight ratio 10 times higher than steel and 50% greater tensile strength, this engineered wood promises to ...