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Castor oil-based hyperbranched polyurethanes as advanced surface coating materials

机译:蓖麻油基超支化聚氨酯作为高级表面涂料

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21st Century is treated as the century for highly branched macromolecules, because of their unique structural architecture and outstanding performance characteristics, in the field of polymer science. In the present study, castor oil-based two hyperbranched polyurethanes (HBPUs) were synthesized via A _2 + B _3 approach using castor oil or monoglyceride of the castor oil as the hydroxyl containing B _3 reactant and toluene diisocyanate (TDI) as an A _2 reactant along with 1,4-butane diol (BD) as the chain extender and poly(ε-caprolactone) diol (PCL) as a macroglycol. The adopted 'high dilution and slow addition' technique offers hyperbranched polymers with high yield and good solubility in most of the polar aprotic solvents. Fourier transforms infra-red spectroscopy (FTIR) and nuclear magnetic resonance (NMR) analyses confirmed the chemical structure of synthesized polymers, while wide angle X-ray diffraction (WXRD) and scanning electron microscope (SEM) resulted the insight of their physical structures. The degree of branching was calculated from ~1H NMR and found to be 0.57 for castor oil based hyperbranched polyurethane (CHBPU), while it was 0.8 for monoglyceride based hyperbranched polyurethane (MHBPU). The studies showed that MHBPU and CHBPU exhibited tensile strength 11 MPa and 7 MPa, elongation at break 695% and 791%, scratch hardness 5 kg and 4.5 kg, gloss 84 and 72, respectively. Thermal properties like thermo stability, melting point, enthalpy, degree of crystallinity and glass transition temperature (T _g); and chemical resistance in different chemical media were found to be almost equivalent for both the polyurethanes. The measurements of dielectric constant and lost factor indicated that both the HBPUs behave as dielectric materials. Thus the synthesized HBPUs have the potential to be used as advanced surface coating materials.
机译:在高分子科学领域,由于21世纪是高支化大分子的世纪,因为它们独特的结构结构和出色的性能特征。在本研究中,使用蓖麻油或蓖麻油的甘油单酸酯作为含羟基的B _3反应物,并用甲苯二异氰酸酯(TDI)作为A _2,通过A _2 + B _3方法合成了基于蓖麻油的两种超支化聚氨酯(HBPU)。与1,4-丁二醇(BD)作为扩链剂和聚(ε-己内酯)二醇(PCL)作为大二醇。采用的“高稀释度和缓慢添加”技术使超支化聚合物在大多数极性非质子溶剂中具有高收率和良好的溶解性。傅立叶变换红外光谱(FTIR)和核磁共振(NMR)分析证实了合成聚合物的化学结构,而广角X射线衍射(WXRD)和扫描电子显微镜(SEM)则使他们了解了其物理结构。支化度由〜1H NMR计算得出,对于蓖麻油基超支化聚氨酯(CHBPU)为0.57,而单甘油酯基超支化聚氨酯(MHBPU)为0.8。研究表明,MHBPU和CHBPU的抗张强度分别为11 MPa和7 MPa,断裂伸长率分别为695%和791%,划痕硬度分别为5 kg和4.5 kg,光泽度为84和72。热性能,如热稳定性,熔点,焓,结晶度和玻璃化转变温度(T _g);发现两种聚氨酯在不同化学介质中的耐化学性和耐化学性几乎相等。介电常数和损耗因子的测量结果表明,这两种HBPU均表现为介电材料。因此,合成的HBPU有潜力用作高级表面涂层材料。

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