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通过含有胶体颗粒二元混合物的气溶胶液滴蒸发形成超颗粒:控制最终形态

Supra-particle formation by evaporation of aerosol droplets containing binary mixtures of colloidal particles: Controlling the final morphology.

作者信息

Mahato Lukesh K, Varlas Spyridon, Miles Barnaby E A, Chan Derek H H, Hardy Daniel A, Eloi Jean-Charles, Harniman Robert L, Miles Rachael E H, Armes Steven P, Reid Jonathan P

机构信息

School of Chemistry, University of Bristol, Bristol BS8 1TS, UK.

Dainton Building, Department of Chemistry, University of Sheffield, Sheffield S3 7HF, UK.

出版信息

J Colloid Interface Sci. 2025 Mar 15;682:251-262. doi: 10.1016/j.jcis.2024.11.155. Epub 2024 Nov 23.

Abstract

HYPOTHESIS

Supra-particle formation by evaporation of an aqueous aerosol droplet containing nano-colloidal particles is challenging to investigate but has significant applications. We hypothesise that the Peclet number, Pe, which compares the effectiveness of evaporation-induced advection to that of colloidal diffusion, is critical in determining supra-particle morphology and can be used to predict the dried morphology for droplet containing polydisperse nanoparticles.

EXPERIMENTS

Sterically-stabilized diblock copolymer nanoparticles were prepared via polymerization-induced self-assembly (PISA). The systematic study was performed for evaporation rates by levitating an aqueous aerosol droplet and collecting dry supra-particles using electrodynamic balance (EDB) and falling droplet column (FDC), respectively for single-size particles and binary mixtures particles. The supra-particle morphology was characterized using scanning electron microscopy (SEM).

FINDINGS

We validate the hypothesis of a higher Pe increases the degree of buckling for both unimodal and bimodal nanoparticle size distributions by employing a higher evaporation rate (K) to increase Pe. However, if Pe is increased by lowering the mean diffusion coefficient (D) at a fixed K, the degree of buckling is reduced. For the binary mixture of nanoparticles of differing size, this can be achieved by reducing the concentration of smaller nanoparticles relative to that of larger nanoparticles. Hence consideration of Pe alone is insufficient to reliably predict the final supra-particle morphology.

摘要

假设

通过蒸发含有纳米胶体颗粒的水性气溶胶液滴形成超颗粒的过程很难研究,但具有重要应用。我们假设,佩克莱数(Pe),即比较蒸发诱导平流与胶体扩散有效性的参数,对于确定超颗粒形态至关重要,并且可用于预测含有多分散纳米颗粒的液滴的干燥形态。

实验

通过聚合诱导自组装(PISA)制备了空间稳定的二嵌段共聚物纳米颗粒。通过悬浮水性气溶胶液滴并分别使用电动天平(EDB)和落滴柱(FDC)收集干燥的超颗粒,对单尺寸颗粒和二元混合物颗粒的蒸发速率进行了系统研究。使用扫描电子显微镜(SEM)对超颗粒形态进行了表征。

发现

我们通过采用更高的蒸发速率(K)来提高Pe,验证了对于单峰和双峰纳米颗粒尺寸分布,较高的Pe会增加屈曲程度这一假设。然而,如果在固定的K下通过降低平均扩散系数(D)来提高Pe,则屈曲程度会降低。对于不同尺寸的纳米颗粒二元混合物,这可以通过相对于较大纳米颗粒降低较小纳米颗粒的浓度来实现。因此,仅考虑Pe不足以可靠地预测最终的超颗粒形态。

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