Random Access Memory (RAM) Contacts Waste Catalyzes Organic Reactions

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https://riunet.upv.es/handle/10251/221499

Cita bibliográfica

Daniel;Mon-Conejero, Marta;Leyva Perez, Antonio (2025). Random Access Memory (RAM) Contacts Waste Catalyzes Organic Reactions. Global Challenges. 9(6):2500069-1-2500069-7. https://doi.org/10.1002/gch2.202500069

Titulación

Resumen

[EN] The direct utilization of metals from electronic waste (e-waste) in catalysis is a barely explored concept that, however, should be feasible for reactions where the catalytically active species can be formed in situ from the e-waste metal pieces. This approach circumvents any capture or isolation of particular metals, thus saving additional treatments (extractions, neutralization, separations, washings, & mldr;) and valorizing the e-waste in its own. Here, it is shown that a metallic contact (approximate to 1 mg) of a computers random-access memory (RAM) catalyzes a variety of organic reactions in high yields. For instance, one RAM contact catalyzes the one-pot esterification-hydration reaction between acyl chlorides, propargyl alcohols, and water, at room temperature in 93-99% yields with turnover frequencies >0.5 million per hour. In this way, >50 kg of organic products could be prepared with just the RAM contacts discarded per year in the Institutes recycling bin. These results open the way to directly use e-waste in catalysis for organic synthesis.

Fuente

Global Challenges

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