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热泳和热各向异性的 Janus 纳米粒子在热场中。

Thermophoresis and thermal orientation of Janus nanoparticles in thermal fields.

机构信息

Department of Chemistry, Molecular Sciences Research Hub, Imperial College London, London, W12 0BZ, UK.

Department of Applied Physics (Group of Optics), University of Cantabria, Avda. Los Castros, s/n, Santander, 39005, Spain.

出版信息

Eur Phys J E Soft Matter. 2022 Jul 9;45(7):59. doi: 10.1140/epje/s10189-022-00212-3.

Abstract

Thermal fields provide a route to control the motion of nanoparticles and molecules and potentially modify the behaviour of soft matter systems. Janus nanoparticles have emerged as versatile building blocks for the self-assembly of materials with novel properties. Here we investigate using non-equilibrium molecular dynamics simulations the behaviour of coarse-grained models of Janus nanoparticles under thermal fields. We examine the role of the heterogeneous structure of the particle on the Soret coefficient and thermal orientation by studying particles with different internal structures, mass distribution, and particle-solvent interactions. We also examine the thermophoretic response with temperature, targeting liquid and supercritical states and near-critical conditions. We find evidence for a significant enhancement of the Soret coefficient near the critical point, leading to the complete alignment of a Janus particle in the thermal field. This behaviour can be modelled and rationalized using a theory that describes the thermal orientation with the nanoparticle Soret coefficient, the mass and interaction anisotropy of the Janus nanoparticle, and the thermal field's strength. Our simulations show that the mass anisotropy plays a crucial role in driving the thermal orientation of the Janus nanoparticles.

摘要

热场为控制纳米粒子和分子的运动以及潜在地改变软物质系统的行为提供了一种途径。Janus 纳米粒子已成为具有新颖特性的材料自组装的多功能构建块。在这里,我们通过非平衡分子动力学模拟研究了热场下 Janus 纳米粒子粗粒模型的行为。我们通过研究具有不同内部结构、质量分布和粒子-溶剂相互作用的粒子,研究了粒子的不均匀结构对 Soret 系数和热取向的影响。我们还研究了在不同温度下的热泳响应,目标是液体和超临界状态以及近临界条件。我们发现了在临界点附近 Soret 系数显著增强的证据,这导致了 Janus 粒子在热场中的完全对齐。这种行为可以使用一种理论进行建模和合理化,该理论用纳米粒子的 Soret 系数、Janus 纳米粒子的质量和相互作用各向异性以及热场的强度来描述热取向。我们的模拟表明,质量各向异性在驱动 Janus 纳米粒子的热取向方面起着至关重要的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/88da/9271122/54c7d3f64471/10189_2022_212_Fig1_HTML.jpg

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