Aqueous CuS nanocrystals via a flow synthesis approach

Nano Select Pub Date : 2024-05-01 DOI:10.1002/nano.202400025
Helena Decker, Andre Wolf, Moritz Kemmler, Vladimir Lesnyak
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Abstract

Aqueous synthesis of covellite CuS nanoparticles holds significant importance in the field of nanomaterials and environmental sustainability. Using water as a solvent and reactant in the synthesis process aligns with green chemistry principles. It enhances nanoparticle production's scalability and safety. CuS nanoparticles have gained attention for their diverse applications in catalysis, energy storage, and environmental remediation. Aqueous synthesis reduces the environmental footprint associated with hazardous organic solvents, making it an eco‐friendly approach. We report on synthesis routes toward covellite CuS nanocrystals (NCs), emphasizing easy and fast synthesis techniques. Additionally, we develop a flow synthesis of small near infrared active CuS NCs in a custom‐made flow reactor. Combining the advantages of aqueous synthesis and flow chemistry yields a robust and sustainable method for producing covellite CuS NCs readily dispersible in water medium, paving the way for their widespread application in diverse fields.
通过流动合成法获得水性 CuS 纳米晶体
在纳米材料和环境可持续发展领域,水合成沸石 CuS 纳米粒子具有重要意义。在合成过程中使用水作为溶剂和反应物符合绿色化学原则。它提高了纳米粒子生产的可扩展性和安全性。CuS 纳米粒子因其在催化、储能和环境修复方面的广泛应用而备受关注。水合成减少了与有害有机溶剂相关的环境足迹,是一种生态友好型方法。我们报告了沸石 CuS 纳米晶体(NCs)的合成路线,强调了简便快速的合成技术。此外,我们还在定制的流动反应器中开发了一种流动合成小型近红外活性 CuS NCs 的方法。结合水合成和流动化学的优势,我们开发出了一种稳健且可持续的方法,用于生产易于在水介质中分散的沸石 CuS NCs,为其在不同领域的广泛应用铺平了道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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