Król Piotr, Król Bożena, Pielichowska Kinga, Špírková Milena
Department of Polymer Science, Faculty of Chemistry, Rzeszów University of Technology, Al. Powstańców Warszawy 6, 35-959 Rzeszów, Poland.
Department of Biomaterials, Faculty of Materials Science and Ceramics, AGH University of Science and Technology, Al. Mickiewicza 30, 30-059 Kraków, Poland.
Colloid Polym Sci. 2015;293(2):421-431. doi: 10.1007/s00396-014-3417-3. Epub 2014 Oct 26.
In the reaction of 4,4'-methylenebis(phenyl isocyanate), polycaprolactone diol, and -methyldiethanolamine, they were synthesized aqueous dispersions of polyurethane cationomers, from which films were prepared after adding 0-2 wt% graphene. In order to obtain nanocomposites, graphene was previously noncovalent functionalized in tetrahydrofurane in the field of ultrasound. The chemical structure and the morphology of obtained nanocomposites were analyzed by IR spectroscopy, atomic force microscopy (AFM), and differential scanning calorimetry (DSC) microcalorimetry methods. It was found that the presence of graphene results in increased thermal and mechanical strength of received polymer films and contributes to the increase in hydrophobicity of generally hydrophilic coatings prepared from waterborne polyurethane cationomers. Based on received results, possible interactions between graphene and phase structure of polyurethane cationomers were discussed. Relating to the so far described applications of graphene for the modification of polyurethanes, the novelty of this work is the concept of incorporation of graphene particles to polyurethane cationomer chains exclusively through a simple noncovalent functionalization and to investigate the effect of graphene on the properties obtained in this way of thin polyurethane film.
在4,4'-亚甲基双(苯基异氰酸酯)、聚己内酯二醇和N-甲基二乙醇胺的反应中,合成了聚氨酯阳离子聚合物的水分散体,在添加0-2 wt%的石墨烯后从中制备薄膜。为了获得纳米复合材料,石墨烯预先在超声场中于四氢呋喃中进行非共价功能化。通过红外光谱、原子力显微镜(AFM)和差示扫描量热法(DSC)微量热法对所得纳米复合材料的化学结构和形态进行了分析。发现石墨烯的存在导致所制备的聚合物薄膜的热强度和机械强度增加,并有助于提高由水性聚氨酯阳离子聚合物制备的通常亲水性涂层的疏水性。基于所得结果,讨论了石墨烯与聚氨酯阳离子聚合物相结构之间可能的相互作用。与迄今为止所描述的石墨烯用于聚氨酯改性的应用相关,这项工作的新颖之处在于仅通过简单的非共价功能化将石墨烯颗粒掺入聚氨酯阳离子聚合物链的概念,并研究石墨烯对以这种方式获得的聚氨酯薄膜性能的影响。