Institute for Theoretical Physics, Center for Extreme Matter and Emergent Phenomena, Utrecht University, Princetonplein 5, 3584 CC Utrecht, The Netherlands.
Soft Matter. 2023 Apr 12;19(15):2771-2779. doi: 10.1039/d2sm01450e.
Locally (re)structuring colloidal gels - micron-sized particles forming a connected network with arrested dynamics - can enable precise tuning of the micromechanical and -rheological properties of the system. A recent experimental study [B. Saint-Michel, G. Petekidis, and V. Garbin, , 2022, , 2092] showed that local ordering can be rapidly induced by acoustically modulating an embedded microbubble. Here, we perform Brownian dynamics simulations to understand the mechanical effect of an oscillating microbubble on the next-to-bubble structure of the embedding colloidal gel. Our simulations reveal hexagonal-close-packed structures over a range that is comparable to the amplitude of the oscillations. However, we were unable to reproduce the unexpectedly long-ranged modification of the gel structure - dozens of amplitudes - observed in experiment. This suggests including long-ranged effects, such as fluid flow, should be considered in future computational work.
局部(再)构造胶体凝胶 - 微米级颗粒形成具有动力学停滞的连接网络 - 可以实现对系统的微机械和流变学性质的精确调整。最近的一项实验研究[B. Saint-Michel、G. Petekidis 和 V. Garbin,,2022,,2092]表明,通过声调制嵌入的微泡可以快速诱导局部有序。在这里,我们进行布朗动力学模拟,以了解振荡微泡对嵌入胶体凝胶的近邻泡结构的力学影响。我们的模拟揭示了在与振荡幅度可比的范围内的六方密堆积结构。然而,我们无法重现实验中观察到的凝胶结构的出乎意料的长程修饰 - 几十个幅度。这表明在未来的计算工作中应考虑包括流体流动在内的长程效应。