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HIGH THROUGHPUT CONSTRUCTION OF PHASE DIAGRAMS TO GUIDE FORMULATION

机译:相图的高通量构建可指导配方设计

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Formulators of complex mixtures have long known that the characteristics of their final formulation and the position of "equilibrium" often depends critically upon the order of addition of ingredients and the precise processing conditions under which the formulation was made. The large variety of possible outcomes derive from the many eigenstates that are available to each composition of a complex mixture due to the fact that the bonds between the component molecules are weak physical bonds and therefore a potential multitude of nanostructures can be formed. This is especially true of systems comprising polyelectrolytes and oppositely charged surfactants in the semi-dilute regime, because both polyelectrolyte conformation and surfactant micellar association structures are strongly influenced by the ionic environment of the polymer and surfactant molecules. The investigation of the effects of order of addition requires exanimation of a myriad of samples and it is virtually impossible by conventional techniques. This task is ideally suited to investigation by a combinatorial approach aimed at the generation of libraries of pseudo-phase diagrams. In this study we developed a high-throughput screening method to generate phase diagrams over a large range of concentrations for cationic polysaccharide interaction with anionic surfactant in the presence and absence of dissolved electrolyte. Using a liquid handling system for sample preparation, we are able to analyze nearly 1000 samples per day, making the above goals of understanding electrolyte effects and coacervate structure-property relationships attainable.
机译:复杂混合物的配方设计师早就知道,其最终配方的特性和“平衡”的位置通常关键取决于成分的添加顺序和制作配方的精确加工条件。由于组分分子之间的键为弱物理键,因此可以形成潜在的多种纳米结构,因此,复杂混合物的每种成分都可利用多种本征态,从而产生了多种可能的结果。对于在半稀释状态下包含聚电解质和带相反电荷的表面活性剂的系统尤其如此,因为聚电解质的构象和表面活性剂胶束缔合结构均受聚合物和表面活性剂分子的离子环境的强烈影响。研究加料顺序的影响需要对大量样品进行活化处理,而传统技术实际上是不可能的。此任务非常适合通过旨在生成伪相图库的组合方法进行研究。在这项研究中,我们开发了一种高通量筛选方法,可在存在和不存在溶解电解质的情况下,在较大浓度范围内生成相图,以用于阳离子多糖与阴离子表面活性剂的相互作用。使用液体处理系统进行样品制备,我们每天可以分析近1000个样品,从而实现了了解电解质效应和凝聚层结构-特性关系的上述目标。

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