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首页> 外文期刊>Journal of combinatorial chemistry >Combinatorial and high-throughput screening of the effect of siloxane composition on the surface properties of crosslinked siloxane-polyurethane coatings
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Combinatorial and high-throughput screening of the effect of siloxane composition on the surface properties of crosslinked siloxane-polyurethane coatings

机译:组合和高通量筛选硅氧烷组合物对交联硅氧烷-聚氨酯涂料表面性能的影响

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Libraries of siloxane-polyurethane coatings were designed, formulated, and screened using high-throughput experimentation. Four independent variables that were analyzed were the molecular weight of poly(dimethylsiloxane) (PDMS), presence or absence of poly(epsilon-caprolactone) (PCL) blocks attached to the PDMS backbone, the length of the PCL blocks, and the siloxane polymer level in the coating formulations. In addition to the siloxane libraries (3-aminopropyl-terminated PDMS and poly(epsilon-caprolactone)-poly(dimethylsiloxane)-poly(epsilon-caprolactone) (PCL-PDMS-PCL) triblock copolymers), the coating formulation included a trifunctional isocyanate crosslinker, trifunctional poly(epsilon-caprolactone) polyol, 2,4-pentanedione (pot-life extender), dibutyltin diacetate (catalyst), and a blend of solvents. The resulting coatings were analyzed for their surface energy and pseudobarnacle adhesion both before and after aging the coatings for 30 days in water. The water and methylene iodide contact angle averages increase with increasing molecular weight of PDMS. Coatings prepared from PCL-PDMS-PCL triblock copolymers have lower surface energies than coatings prepared from 3-aminopropyl-terminated PDMS; however, lower pseudobarnacle adhesion results were obtained for the coatings prepared from 3-aminopropyl-terminated PDMS than coatings prepared from PCL-PDMS-PCL triblock copolymers. The siloxane polymer level in the coating formulations does not have a significant effect on the surface energy of the coatings, but it resulted in higher pseudobarnacle adhesion.
机译:使用高通量实验设计,配制和筛选了硅氧烷-聚氨酯涂料库。分析了四个独立变量,分别是聚二甲基硅氧烷(PDMS)的分子量,连接到PDMS主链上的聚(ε-己内酯)(PCL)嵌段的存在与否,PCL嵌段的长度和硅氧烷聚合物涂料配方中的含量。除了硅氧烷库(3-氨基丙基封端的PDMS和聚(ε-己内酯)-聚(二甲基硅氧烷)-聚(ε-己内酯)(PCL-PDMS-PCL)三嵌段共聚物)外,涂料配方还包含三官能异氰酸酯交联剂,三官能聚(ε-己内酯)多元醇,2,4-戊二酮(适用期延长剂),二乙酸二丁锡(催化剂)和溶剂混合物。在水中使涂层老化30天之前和之后,分析所得涂层的表面能和假藤壶附着力。水和二甲基碘的接触角平均值随PDMS分子量的增加而增加。由PCL-PDMS-PCL三嵌段共聚物制备的涂料的表面能低于由3-氨丙基封端的PDMS制备的涂料。然而,由3-氨丙基封端的PDMS制备的涂料比由PCL-PDMS-PCL三嵌段共聚物制备的涂料获得的假藤壶附着力更低。涂料配方中硅氧烷聚合物的含量对涂料的表面能没有显着影响,但是导致较高的假藤壶附着力。

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