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首页> 外文期刊>Macromolecular reaction engineering >Incorporating Hydrophobic Cellulose Nanocrystals inside Latex Particles via Mini-Emulsion Polymerization
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Incorporating Hydrophobic Cellulose Nanocrystals inside Latex Particles via Mini-Emulsion Polymerization

机译:通过迷你乳液聚合将疏水纤维素纳米晶体掺入胶乳颗粒内

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摘要

Hydrophobic cellulose nanocrystals (CNCs) are encapsulated inside poly(butyl acrylate/vinyl acetate/acrylic acid) latex particles via mini-emulsion polymerization (MEP). To achieve a genuine MEP, the effects of the concentration of surfactants (sodium dodecyl sulfate/Disponil A3065) and a hydrophobic agent (octadecyl acrylate (ODA)) are optimized in the presence of 0.5 wt% CNC. Using a combination of surfactant and ODA concentrations leading to a particle nucleation method restricted to the monomer droplets, the effects of CNC loading up to 1.5 wt% on the polymerization process and final nanocomposite properties are studied. Despite an increase in particle size and a lower rate of polymerization at higher CNC loadings, the droplet nucleation mechanism remains dominant up to 1.25 wt% CNC loading. Pressure-sensitive adhesive (PSA) performance for nanocomposites produced using hydrophobic CNCs in MEP decreases whereas performance improves considerably when using hydrophilic and partially hydrophobic CNCs in conventional emulsion polymerization. These results shed light on emulsion polymerization technique selection and CNC surface properties for greener industrial production of water-based PSAs.
机译:疏水性纤维素纳米晶体(CNC)通过迷你乳液聚合(MEP)包封在聚(丁基丙烯酸酯/乙酸乙烯酯/丙烯酸)胶乳颗粒中。为了实现真正的MEP,在0.5wt%CNC的存在下优化表面活性剂浓度(十二烷基硫酸钠/二氧化硅A3065)和疏水剂(十八烷基酯(ODA))的影响。使用表面活性剂和ODA浓度的组合导致颗粒核液体的核心液滴方法,研究了CNC负载量高达1.5wt%的聚合过程和最终纳米复合性能的影响。尽管在较高的CNC载荷下粒度增加和较低的聚合速率,但液滴成核机理仍然高达1.25wt%CNC负荷。使用MEP中使用疏水CNC产生的纳米复合材料的压敏粘合剂(PSA)性能降低,而在常规乳液聚合中使用亲水和部分疏水的CNCs,性能显着改善。这些结果阐明了乳液聚合技术选择和CNC表面性能,用于绿色产业生产水基PSAs。

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