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首页> 外文期刊>Macromolecular reaction engineering >Design of Acrylic Dispersants for Nonaqueous Dispersion Polymerization: The Importance of Thermodynamics
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Design of Acrylic Dispersants for Nonaqueous Dispersion Polymerization: The Importance of Thermodynamics

机译:非水分散聚合丙烯酸分散剂的设计:热力学的重要性

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摘要

Poly(acrylic) nanoparticles produced by nonaqueous dispersion (NAD) radical polymerization are important components in many automotive coating formulations. A series of experiments show that the properties of final dispersions (particle size distribution, viscosity, and stability) correlate to the thermodynamics of the NAD system, as characterized by solubility parameters and solubility distances among the continuous phase, the soluble polymeric dispersant, and the polymer particles. The insights gained have enabled the design of a macromonomer dispersant containing greater than 10 mol% 2-hydroxyethyl methacrylate, a necessary functional comonomer addition for end-use properties. Stable NAD products were synthesized by changing the principal component of the dispersant from butyl methacrylate to 2-ethylhexyl methacrylate.
机译:通过非水分散体(NAD)自由基聚合生产的聚(丙烯酸)纳米粒子是许多汽车涂料配方中的重要成分。一系列实验表明,最终分散体的性质(粒度分布,粘度和稳定性)与NAD系统的热力学相关,其特征在于连续相,可溶性聚合物分散剂和溶剂之间的溶解度参数和溶解距离。聚合物颗粒。所获得的见解使得能够设计包含大于10mol%的甲基丙烯酸2-羟乙酯的大分子单体分散剂,这是最终用途特性所必需的功能性共聚单体。通过将分散剂的主要成分从甲基丙烯酸丁酯更改为甲基丙烯酸2-乙基己酯,可以合成稳定的NAD产品。

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