Automated particle detection and advanced optics simplify microplastic analysis for users at every experience level.
This interview takes a closer look at how polymer characterization supports smarter decisions from early development to full-scale manufacturing.
Northwestern University researchers used a Birch reduction-inspired solvated electron solution to relithiate chemically degraded NMC532 within seconds at room temperature, followed by a three-hour ...
Careful pretreatment and method cross-validation support accurate, consistent microplastic identification and measurement.
Researchers reviewed advances in alloy-based anodes for rechargeable magnesium batteries, comparing Mg-free hosts, Mg-containing alloys and alloy-derived surface modifications as routes to improve ...
Rough finishes, limited wear resistance, and poor adhesion to protective coatings can restrict polymer use in demanding ...
A review of rare earth element-containing materials finds that cerium, lanthanum, and other REEs can improve redox behavior, ...
This review examines how the rheology, surface oxidation, and interfacial properties of liquid metals shape their ...
Aerogels are often described as 'frozen smoke' because these extremely light materials are composed mostly of air ...
Hiden Isochema, a world leader in high-accuracy sorption instrumentation, today announces the launch of IGAsorp Ultra, the ...
Within tiny halos of light clinging to a vanishingly thin wisp of optical fiber, scientist Jongmin Lee guides atoms like ...
Researchers developed a room-temperature, maskless electrodeposition method for directly 3D-printing freestanding copper ...
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