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Functional properties of films based on novel waterborne polyurethane dispersions prepared without a chain-extension step

机译:基于新型水性聚氨酯分散体的薄膜的功能性能,在没有链延伸步骤的情况下制备

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A series of novel waterborne polyurethane (PU) dispersions was prepared from a polycarbonate-based macrodiol, 1,6-diisocyanatohexane, 2,2-bis(hydroxymethyl) propionic acid (DMPA) and triethylamine. Different macrodiol-to-DMPA (diol) ratios and different excesses of isocyanate were used, and the typically used chain extension step was omitted. Systematic measurements of the particle size revealed that PU particles have diameters lower than 100 nm at diol ratios of 1:1 and 1:2, while a diol ratio of 2:1 leads to nanoparticles with diameters closer to 100 nm or higher. The lowest size-dispersity (DLS) index was found for PU dispersions with a diol ratio of 1:1 for all excesses of NCO. The high negative values of zeta-potential (from -40 to -65 mV) of these materials indicate their long-term stability. The tensile properties of flat films made from the PU dispersions depend significantly on the sample composition and vary from 2.7 to 33.8 MPa (Young's modulus), 0.2 to 28.0 MPa (tensile strength), 112 to 1193% (elongation-at-break) and 0.5 to 93.2 mJ mm(-3) (toughness). The films were found to be thermally stable to a minimum of 200 degrees C. Dispersions prepared with a 30 and 50 mol% excess of NCO and diol ratios of 1:1 and 1:2 are the most promising materials for practical use as coatings or films. These materials can be used alone or together with water-dispersible additives as the matrix for diverse nanocomposite 2D systems.
机译:一系列新的水性聚氨酯(PU)分散体由聚碳酸酯基MARODOOR,1,6-二异氰酸盐,2,2-双(羟甲基)丙酸(DMPA)和三乙胺制备。使用不同的MARODIOL-TO-DMPA(二醇)比和不同过量的异氰酸酯,省略了通常使用的链延伸步骤。粒度的系统测量显示PU颗粒在1:1和1:2的二醇比下具有低于100nm的直径,而二醇比为2:1导致直径较近100nm或更高的纳米颗粒。发现最低尺寸分散度(DLS)指数对于具有1:1的二醇比的PU分散体,用于所有过量的NCO。这些材料的ζ电位的高负值(从-40至-65mV)表示它们的长期稳定性。由PU分散体制成的扁平膜的拉伸性能显着取决于样品组合物,并在2.7至33.8MPa(杨氏模量)之间变化,0.2至28.0MPa(拉伸强度),112至1193%(伸长率)和0.5至93.2 MJ mm(-3)(韧性)。发现薄膜的热稳定至最小200℃。用30和50mol%的NCO和二醇比为1:1和1:2的分散体是最有希望的用于实际用途的最有希望的材料或电影。这些材料可以单独使用或与水分散性添加剂一起使用,作为用于多种纳米复合材料2D系统的基质。

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