论文标题

凝胶化和重新进入软胶体和线性聚合物的混合物中

Gelation and Re-entrance in Mixtures of Soft Colloids and Linear Polymers of Equal Size

论文作者

Parisi, D., Truzzolillo, D., Slim, A. H., Dieudonné-George, P., Narayanan, S., Conrad, J. C., Deepak, V. D., Gauthier, M., Vlassopoulos, D.

论文摘要

由胶体颗粒组成的液体混合物和较小的非吸附线性均聚物物可以由于聚合物介导的耗竭力而进行凝胶化过渡。现在,我们表明,将线性聚合物添加到具有相同流体动力学大小的软胶体悬浮液中,从而产生液体至凝胶到固定的液体过渡。特别地,借助线性粘弹性和小角度X射线散射实验确定了1,4-聚丁二烯星线性聚合物混合物的动态态图。在将恒星聚合物保持在其标称重叠浓度之下的同时,在增加线性聚合物含量时形成了凝胶。线性链的进一步添加产生了重入液体。这种意外的行为通过三种可能的现象的相互作用合理化了:(i)由恒星和聚合物长度尺度之间的大小差异和聚合物长度尺度的耗尽相互作用,这是该纠缠网络的网格大小; (ii)由于施加在恒星上的渗透压升高而导致的胶体脱落; (iii)随之而来的逐渐抑制耗尽效率会因较小的网格尺寸而增加聚合物浓度,因此吸引范围较小。我们的结果揭示了一种令人兴奋的新方法,可以调整软胶体的流动,并突出一条在很大程度上尚未开发的通向软胶体混合物的路径。

Liquid mixtures composed of colloidal particles and much smaller non-adsorbing linear homopolymers can undergo a gelation transition due to polymer-mediated depletion forces. We now show that the addition of linear polymers to suspensions of soft colloids having the same hydrodynamic size yields a liquid-to-gel-to-re-entrant liquid transition. In particular, the dynamic state diagram of 1,4-polybutadiene star-linear polymer mixtures was determined with the help of linear viscoelastic and small angle X-ray scattering experiments. While keeping the star polymers below their nominal overlap concentration, a gel was formed upon increasing the linear polymer content. Further addition of linear chains yielded a re-entrant liquid. This unexpected behavior was rationalized by the interplay of three possible phenomena: (i) depletion interactions, driven by the size disparity between the stars and the polymer length scale which is the mesh size of this entanglement network; (ii) colloidal deswelling due to the increased osmotic pressure exerted onto the stars; and (iii) a concomitant progressive suppression of depletion efficiency on increasing polymer concentration due to reduced mesh size, hence a smaller range of attraction. Our results unveil an exciting new way to tailor the flow of soft colloids and highlight a largely unexplored path to engineer soft colloidal mixtures.

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