Thursday, July 30, 2026
Science

Achieving sustainable electrosynthesis of ethylamine at an industrial scale

From dyes to pharmaceuticals to emulsifiers—ethylamine (EA) is a versatile component used in many industries. The downside of EA is that its production is terribly complicated and energy intensive. However, it is not a simple task to simplify EA production in a way that can also be scaled up to indu...

Achieving sustainable electrosynthesis of ethylamine at an industrial scale
Image: Phys.org
From dyes to pharmaceuticals to emulsifiers—ethylamine (EA) is a versatile component used in many industries. The downside of EA is that its production is terribly complicated and energy intensive. However, it is not a simple task to simplify EA production in a way that can also be scaled up to industrial levels. Researchers at Tohoku University's WPI-AIMR may have found an answer to this problem. Rare earth Eu atoms were modified on Cu2O nanoneedles to produce a catalyst (Eu-Cu2O) that can increase the efficiency of the chemical reaction that produces EA.

Originally published at Phys.org

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