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在具有可调反离子的水基分散体中,柠檬酸盐包覆的γ-FeO 纳米粒子的热扩散 - 磁场下 Soret 系数的各向异性。

Thermodiffusion of citrate-coated γ-FeO nanoparticles in aqueous dispersions with tuned counter-ions - anisotropy of the Soret coefficient under a magnetic field.

机构信息

Sorbonne Université, CNRS, PHysico-chimie des Electrolytes et Nanosystèmes InterfaciauX, F-75005, Paris, France.

出版信息

Phys Chem Chem Phys. 2019 Jan 23;21(4):1895-1903. doi: 10.1039/c8cp06858e.

Abstract

Under a temperature gradient, the direction of thermodiffusion of charged γ-Fe2O3 nanoparticles (NPs) depends on the nature of the counter-ions present in the dispersion, resulting in either a positive or negative Soret coefficient. Various counter-ions are probed in finely tuned and well characterized dispersions of citrate-coated NPs at comparable concentrations of free ionic species. The Soret coefficient ST is measured in stationary conditions together with the mass-diffusion coefficient Dm using a forced Rayleigh scattering method. The strong interparticle repulsion, determined by SAXS, is also attested by the increase of Dm with NP volume fraction Φ. The Φ-dependence of ST is analyzed in terms of thermophoretic and thermoelectric contributions of the various ionic species. The obtained single-particle thermophoretic contribution of the NPs (the Eastman entropy of transfer ŝNP) varies linearly with the entropy of transfer of the counter-ions. This is understood in terms of electrostatic contribution and of hydration of the ionic shell surrounding the NPs. Two aqueous dispersions, respectively, with ST > 0 and with ST < 0 are then probed under an applied field H[combining right harpoon above], and an anisotropy of Dm and of ST is induced while the in-field system remains monophasic. Whatever the H[combining right harpoon above]-direction (parallel or perpendicular to the gradients and ), the Soret coefficient is modulated keeping the same sign as in zero applied field. In-field experimental determinations are well described using a mean field model of the interparticle magnetic interaction.

摘要

在温度梯度下,带电 γ-Fe2O3 纳米颗粒 (NPs) 的热扩散方向取决于分散体中存在的反离子的性质,导致正或负的 Soret 系数。在精细调节和充分表征的柠檬酸盐包覆 NPs 分散体中,研究了各种反离子在可比游离离子浓度下的情况。在静态条件下,使用强制瑞利散射法测量 Soret 系数 ST 以及质量扩散系数 Dm。由 SAXS 确定的强烈的颗粒间排斥力也通过 NP 体积分数 Φ 与 Dm 的增加得到证实。用各种离子物种的热泳和热电贡献分析 ST 的 Φ 依赖性。NP 的单颗粒热泳贡献(Eastman 传递熵 ŝNP)随反离子的传递熵线性变化。这可以理解为静电贡献和围绕 NPs 的离子壳的水合作用。然后在施加电场 H[combining right harpoon above]下探测分别具有 ST > 0 和 ST < 0 的两个水相分散体,并在单相体系中诱导出 Dm 和 ST 的各向异性。无论 H[combining right harpoon above]-方向(平行或垂直于梯度和 )如何,Soret 系数都保持与零施加场相同的符号进行调制。使用颗粒间磁相互作用的平均场模型可以很好地描述现场实验测定。

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