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活性微流控反应器辅助可控合成纳米粒子及其相关潜在的生物医学应用。

Active microfluidic reactor-assisted controlled synthesis of nanoparticles and related potential biomedical applications.

机构信息

Engineering and Computing Center, Department of Electrical engineering, Florida International University, Miami, Florida 33174, USA.

Engineering and Computing Center, Department of Mechanical and Materials Engineering, Florida International University, Miami, Florida 33174, USA.

出版信息

J Mater Chem B. 2023 Jun 28;11(25):5650-5667. doi: 10.1039/d3tb00057e.

Abstract

Fabricating high-performance nanoparticles (NPs) is currently a focus of researchers due to their manipulative size-dependent unique properties required to develop next-generation advanced systems. To harness the unique properties of NPs, maintaining identical characteristics throughout the processing and application process system is crucial to producing uniform-sized, or monodisperse, NPs. In this direction, mono-dispersity can be achieved by exerting extreme control over the reaction conditions during the NP synthesis process. Microfluidic technology offers a unique approach to control fluid conditions at the microscale and is thus well-positioned as an alternative strategy to synthesize NPs in reactors demonstrating micrometric dimensions and advanced size-controlled nanomaterial production. These microfluidic reactors can be broadly classified as active or passive based on their dependence on external energy sources. Passive microfluidic reactors, despite their lack of reliance on external energy, are frequently constrained in terms of their mixing efficacy when compared to active systems. However, despite several fundamental and technological advantages, this area of research as well as its application to the biological sciences is not well-discussed. To fill this gap, this review for the first time discusses various strategies for synthesizing NPs using active microfluidic reactors including acoustic, pressure, temperature, and magnetic assisted microfluidic reactors. Various established ways for achieving size control on NP synthesis in microfluidic reactors representing the applicability of micro-reaction technology in developing novel nanomaterials suitable for potential biomedical applications are presented in this review along with a comprehensive discussion about the challenges and prospects.

摘要

由于需要开发下一代先进系统,具有可操纵尺寸依赖性独特性质的高性能纳米粒子(NPs)的制造目前是研究人员关注的焦点。为了利用 NPs 的独特性质,在整个加工和应用过程系统中保持相同的特征对于生产均匀尺寸或单分散 NPs 至关重要。在这个方向上,可以通过在 NP 合成过程中对反应条件施加极端控制来实现单分散性。微流控技术为在微尺度上控制流体条件提供了一种独特的方法,因此是一种替代策略,可以在展示微米尺寸和先进尺寸控制纳米材料生产的反应器中合成 NPs。这些微流控反应器可以根据它们对外部能源的依赖程度分为主动或被动。尽管被动微流控反应器不依赖于外部能源,但与主动系统相比,其混合效果经常受到限制。然而,尽管具有几个基本和技术优势,但该研究领域及其在生物科学中的应用并没有得到很好的讨论。为了填补这一空白,本综述首次讨论了使用主动微流控反应器合成 NPs 的各种策略,包括声、压、温、磁辅助微流控反应器。本综述介绍了各种在微流控反应器中实现 NP 合成尺寸控制的既定方法,展示了微反应技术在开发适合潜在生物医学应用的新型纳米材料方面的适用性,并全面讨论了挑战和前景。

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