论文标题

使用主动微流变学和低温扫描电子显微镜将微观胶体凝胶的显微镜粘弹性和结构相关联

Correlating microscopic viscoelasticity and structure of an aging colloidal gel using active microrheology and cryogenic scanning electron microscopy

论文作者

Biswas, Rajkumar, Parmar, Vaibhav Raj Singh, Thambi, Anson G, Bandyopadhyay, Ranjini

论文摘要

光学镊子(OTS)可以检测在培养基中的胶体粒子上运行的Pico-Newton范围力,并已成功地用于研究具有内部结构的复杂系统。随着颗粒之间的静电相互作用,在物理衰老过程中逐渐发展,在水性培养基中,会随着时间的推移形成显微镜网络,从而形成微观网络。我们研究了悬浮在衰老的Laponite悬浮液中的光学捕获的微米大小胶体探针颗粒的强制运动,随着底层laponite微结构逐渐发展。我们基于OT的振荡活性微流变实验使我们能够研究衰老的粘土粘土悬浮液中不断发展的微观结构的机械响应,范围为2.5%w/v至3.0%w/v,在90分钟至150分钟之间的几个老化时间。我们重复针对一系列胶体探针颗粒直径的这种振荡测量结果,并研究探针大小对衰老悬浮液微变学的影响。使用低温场发射扫描电子显微镜(Cryo-FESEM),我们检查了各种样品浓度和衰老时间的Laponite悬浮液显微结构的平均孔隙区域。通过将OT和冷冻FESEM数据相结合,我们在这里首次报告了我们的最佳知识,交叉模量与衰老悬架微结构的平均孔径之间的反相关性以及不同的悬浮液浓度以及此处研究的探针粒径。

Optical tweezers (OTs) can detect pico-Newton range forces operating on a colloidal particle trapped in a medium and have been successfully utilized to investigate complex systems with internal structures. Laponite clay particles in an aqueous medium self-assemble to form microscopic networks over time as electrostatic interactions between the particles gradually evolve in a physical aging process. We investigate the forced movements of an optically trapped micron-sized colloidal probe particle, suspended in an aging Laponite suspension, as the underlying Laponite microstructures gradually develop. Our OT-based oscillatory active microrheology experiments allow us to investigate the mechanical responses of the evolving microstructures in aging aqueous clay suspensions of concentrations ranging from 2.5% w/v to 3.0% w/v and at several aging times between 90 and 150 minutes. We repeat such oscillatory measurements for a range of colloidal probe particle diameters and investigate the effect of probe size on the microrheology of the aging suspensions. Using cryogenic field emission scanning electron microscopy (cryo-FESEM), we examine the average pore areas of the Laponite suspension microstructures for various sample concentrations and aging times. By combining our OT and cryo-FESEM data, we report here for the first time to the best of our knowledge, an inverse correlation between the crossover modulus and the average pore diameter of the aging suspension microstructures for the different suspension concentrations and probe particle sizes studied here.

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