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液-液界面上的混合纳米粒子:理论和模拟的见解。

Hybrid Nanoparticles at Fluid-Fluid Interfaces: Insight from Theory and Simulation.

机构信息

Department of Theoretical Chemistry, Institute of Chemical Sciences, Faculty of Chemistry, Maria Curie-Skłodowska University, 20-031 Lublin, Poland.

出版信息

Int J Mol Sci. 2023 Feb 26;24(5):4564. doi: 10.3390/ijms24054564.

Abstract

Hybrid nanoparticles that combine special properties of their different parts have numerous applications in electronics, optics, catalysis, medicine, and many others. Of the currently produced particles, Janus particles and ligand-tethered (hairy) particles are of particular interest both from a practical and purely cognitive point of view. Understanding their behavior at fluid interfaces is important to many fields because particle-laden interfaces are ubiquitous in nature and industry. We provide a review of the literature, focusing on theoretical studies of hybrid particles at fluid-fluid interfaces. Our goal is to give a link between simple phenomenological models and advanced molecular simulations. We analyze the adsorption of individual Janus particles and hairy particles at the interfaces. Then, their interfacial assembly is also discussed. The simple equations for the attachment energy of various Janus particles are presented. We discuss how such parameters as the particle size, the particle shape, the relative sizes of different patches, and the amphiphilicity affect particle adsorption. This is essential for taking advantage of the particle capacity to stabilize interfaces. Representative examples of molecular simulations were presented. We show that the simple models surprisingly well reproduce experimental and simulation data. In the case of hairy particles, we concentrate on the effects of reconfiguration of the polymer brushes at the interface. This review is expected to provide a general perspective on the subject and may be helpful to many researchers and technologists working with particle-laden layers.

摘要

具有不同部分特殊性质的杂化纳米粒子在电子学、光学、催化、医学等众多领域都有广泛的应用。在目前生产的粒子中,Janus 粒子和配体连接的(多毛的)粒子从实际和纯粹的认知角度来看都特别有趣。了解它们在流体界面上的行为对于许多领域都很重要,因为负载粒子的界面在自然界和工业中无处不在。我们提供了文献综述,重点介绍了在流体-流体界面上的杂化粒子的理论研究。我们的目标是在简单的唯象模型和先进的分子模拟之间建立联系。我们分析了单个 Janus 粒子和多毛粒子在界面上的吸附。然后,还讨论了它们的界面组装。给出了各种 Janus 粒子的附着能的简单方程。我们讨论了诸如粒子尺寸、粒子形状、不同斑块的相对尺寸和两亲性等参数如何影响粒子吸附。这对于利用粒子稳定界面的能力至关重要。还呈现了分子模拟的代表性示例。我们表明,简单的模型可以很好地再现实验和模拟数据。在多毛粒子的情况下,我们集中讨论了聚合物刷在界面上的重构的影响。预计这篇综述将为该主题提供一个总体视角,并可能对许多从事负载粒子层工作的研究人员和技术人员有所帮助。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/49b7/10003740/963445497057/ijms-24-04564-g001.jpg

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