White B Tyler, Migliore John M, Mapesa Emmanuel U, Wolfgang Josh D, Sangoro Joshua, Long Timothy E
Department of Chemistry, Macromolecules Innovation Institute (MII), Virginia Tech Blacksburg VA 24061 USA
Department of Chemistry, Bethel University St. Paul MN 55112 USA.
RSC Adv. 2020 May 18;10(32):18760-18768. doi: 10.1039/d0ra02369h. eCollection 2020 May 14.
Polyurea elastomers are utilized for a myriad of applications ranging from coatings and foams to dielectric materials for capacitors and actuators. However, current synthetic methods for polyureas rely on highly reactive isocyanates, solvents, and catalysts, which collectively pose serious safety considerations. This report details the synthesis and characterization of melt processible, poly(tetramethylene oxide) (PTMO)-based segmented polyurea elastomers utilizing an isocyanate-, solvent-, and catalyst-free approach. Dynamic mechanical analysis and differential scanning calorimetry suggested microphase separation between the hard and soft segments. Tensile analysis revealed high strain at break for all segmented copolymers between 340 and 770%, and tunable modulus between 0.76 and 29.5 MPa. Dielectric spectroscopy revealed that the composition containing 20 wt% hard segment offered the highest permittivity at 10.6 (1 kHz, 300 K) of the segmented copolymers, indicating potential as a dielectric elastomer.
聚脲弹性体有多种应用,从涂料、泡沫到电容器和致动器的介电材料。然而,目前聚脲的合成方法依赖于高反应性异氰酸酯、溶剂和催化剂,这些因素共同构成了严重的安全问题。本报告详细介绍了采用无异氰酸酯、无溶剂和无催化剂方法合成和表征的可熔融加工的聚(四亚甲基醚)(PTMO)基嵌段聚脲弹性体。动态力学分析和差示扫描量热法表明硬段和软段之间存在微相分离。拉伸分析表明,所有嵌段共聚物的断裂伸长率在340%至770%之间,模量在0.76至29.5MPa之间可调。介电谱表明,在10.6(1kHz,300K)时,含20wt%硬段的组合物在嵌段共聚物中具有最高的介电常数,表明其作为介电弹性体的潜力。