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首页> 外文期刊>Plasma Sources Science & Technology >Continuous-flow, atmospheric-pressure microplasmas: A versatile source for metal nanoparticle synthesis in the gas or liquid phase
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Continuous-flow, atmospheric-pressure microplasmas: A versatile source for metal nanoparticle synthesis in the gas or liquid phase

机译:连续流,大气压微等离子体:气相或液相中金属纳米粒子合成的多功能来源

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摘要

Continuous-flow, atmospheric-pressure microplamas are a unique class of plasmas that are highly suitable for emerging nanomaterials applications. Here, we present two schemes for the preparation of metal nanoparticles based on these plasma sources. Nanoparticles are synthesized in the gas phase by non-thermal dissociation of vapor precursors in a microplasma reactor. Monometallic Ni and Fe nanoparticles, as well as compositionally controlled NiFe bimetallic nanoparticles, can be grown with tunable mean diameters between 1 and 5 nm and narrow size distributions. Alternatively, colloidal metal nanoparticles are produced directly in aqueous solutions. Metal cations generated from anodic dissolution of a bulk metal or present in the form of metal salt are reduced by the microplasma to form nanoparticles and capped by a stabilizer. Both approaches are low cost, scalable and general and should allow a wide range of nanoparticle materials to be synthesized in the gas or liquid phase.
机译:连续流动的大气压等离子体是一类独特的等离子体,非常适合新兴的纳米材料应用。在这里,我们提出了基于这些等离子体源的两种制备金属纳米颗粒的方案。通过在微等离子体反应器中蒸气前体的非热解离,在气相中合成纳米颗粒。单金属Ni和Fe纳米粒子,以及成分控制的NiFe双金属纳米粒子,可以以1至5 nm的可调平均直径和狭窄的尺寸分布生长。或者,胶体金属纳米颗粒直接在水溶液中生产。由大块金属的阳极溶解产生或以金属盐形式存在的金属阳离子被微等离子体还原形成纳米颗粒,并被稳定剂覆盖。两种方法都是低成本,可扩展且通用的,并且应允许在气相或液相中合成多种纳米颗粒材料。

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