Tryznowski Mariusz, Żołek-Tryznowska Zuzanna
Faculty of Production Engineering, Warsaw University of Technology, Narbutta 85, 02-524 Warsaw, Poland.
Materials (Basel). 2020 Nov 17;13(22):5184. doi: 10.3390/ma13225184.
Poly(hydroxyurethane)s (PHU) are alternatives for conventional polyurethanes due to the use of bis-cyclic dicarbonates and diamines instead of harmful and toxic isocyanates. However, the surface properties of poly(hydroxyurethane)s are not well known. In this work, we focus on the analysis of the surface properties of poly(hydroxyurethane) coatings. Poly(hydroxyurethane)s were obtained by a catalyst-free method from commercially available carbonated diglycidyl ether of bisphenol A (Epidian 6 epoxy resins) and various diamines: ethylenediamine, trimethylenediamine, putrescine, hexamethylenediamine, 2,2,4(2,4,4)-trimethyl-1,6-hexanediamine, -xylylenediamine, 1,8-diamino-3,6-dioxaoctane, 4,7,10-trioxa-1,13-tridecanediamine, and isophorone diamine, using a non-isocyanate route. The structures of the obtained polymers were confirmed by FT-IR, H NMR and C NMR spectroscopy, and thermogravimetric (TGA) and differential scanning calorimetry (DSC) analyses were performed. The rheological characteristic of the obtained polymers is presented. The static contact angles of water, diidomethane, and formamide, deposited on PHU coatings, were measured. From the measured contact angles, the surface free energy was calculated using two different approaches: Owens-Wendt and van Oss-Chaudhury-Good. Moreover, the wetting envelopes of PHU coatings were plotted, which enables the prediction of the wetting effect of various solvents. The results show that in the investigated coatings, a mainly dispersive interaction occurs.
聚(羟基聚氨酯)(PHU)由于使用双环二碳酸酯和二胺代替有害且有毒的异氰酸酯,成为传统聚氨酯的替代品。然而,聚(羟基聚氨酯)的表面性质尚不为人所知。在这项工作中,我们专注于聚(羟基聚氨酯)涂层表面性质的分析。聚(羟基聚氨酯)通过无催化剂方法,由市售的双酚A碳酸化二缩水甘油醚(Epidian 6环氧树脂)和各种二胺:乙二胺、三亚甲基二胺、腐胺、己二胺、2,2,4(2,4,4)-三甲基-1,6-己二胺、-二甲苯二胺、1,8-二氨基-3,6-二氧杂辛烷、4,7,10-三氧杂-1,13-十三烷二胺和异佛尔酮二胺,采用非异氰酸酯路线制得。通过傅里叶变换红外光谱(FT-IR)、氢核磁共振(H NMR)和碳核磁共振(C NMR)光谱确认了所得聚合物的结构,并进行了热重分析(TGA)和差示扫描量热法(DSC)分析。给出了所得聚合物的流变特性。测量了沉积在PHU涂层上的水、二碘甲烷和甲酰胺的静态接触角。根据测量的接触角,使用两种不同方法计算表面自由能:欧文斯-温德特法和范奥-乔杜里-古德法。此外,绘制了PHU涂层的润湿包络线,这能够预测各种溶剂的润湿效果。结果表明,在所研究的涂层中,主要发生分散相互作用。