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Surfactant-Modulation of the Cationic-Polymer-Induced Aggregation of Anionic Particulate Dispersions

机译:阳离子聚合物诱导的阴离子微粒分散体聚集的表面活性剂调节

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摘要

Commodity formulations contain many chemically distinct components and their mutual interactions define the beneficial characteristics of the formulation. Mixing oppositely charged polymers and surfactants invariably induces macroscopic phase separation, to a degree dependent on the prevailing polymer and surface charge densities, and the interaction can be modulated by added ionic surfactants. Here, it is shown that a general universality exists between the charge present on a series of cationic-modified cellulose polymers—the charge being controlled either by the degree of cationic modification of the polymer itself or through the subsequent level of anionic surfactant binding—and its capacity to remove anionic colloidal material from solution, be that silica particles or polystyrene-butadiene lattices. Particulate material not removed from solution bears no adsorbed polymer, i.e., the particle surface is bare. Addition of nonionic surfactant does not negate this universality, implying that the nonionic surfactant is largely a spectator molecule or structure (micelle) in these systems, and that the dominant force is an electrostatic one.
机译:商品制剂包含许多化学上不同的成分,它们之间的相互作用定义了制剂的有益特性。混合带相反电荷的聚合物和表面活性剂总是引起宏观相分离,其程度取决于主要的聚合物和表面电荷密度,并且可以通过添加离子型表面活性剂来调节相互作用。在此表明,在一系列阳离子改性的纤维素聚合物上存在的电荷之间存在普遍的通用性,电荷既可以通过聚合物本身的阳离子改性程度来控制,也可以通过随后的阴离子表面活性剂结合水平来控制,其从溶液中去除阴离子胶体材料的能力可以是二氧化硅颗粒或聚苯乙烯-丁二烯晶格。未从溶液中除去的颗粒物质不带有吸附的聚合物,即颗粒表面是裸露的。添加非离子表面活性剂并不能消除这种普遍性,这意味着在这些系统中非离子表面活性剂很大程度上是一种旁观者分子或结构(胶束),并且主导力是静电力。

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