Shearouse William C, Lillie Leon M, Reineke Theresa M, Tolman William B
Department of Chemistry and Center for Sustainable Polymers, University of Minnesota, 207 Pleasant Street SE, Minneapolis, Minnesota 55455-0431, United States.
ACS Macro Lett. 2015 Mar 17;4(3):284-288. doi: 10.1021/acsmacrolett.5b00099. Epub 2015 Feb 16.
Using the glucose derivatives isosorbide and glucarodilactone along with a castor oil derivative, 10-undecenoyl chloride, two monomers were synthesized: glucarodilactone undecenoate (GDLU) and isosorbide undecenoate (IU). These monomers were polymerized via acyclic diene metathesis (ADMET) polymerization to yield two homopolymers, P(GDLU) and P(IU), and two copolymers, P(GDLUIU) and P(GDLUIU), of similar number-averaged molecular weight and relative composition (51 and 61 kDa, = 1.8 and 1.4, 46:54 and 52:48 mol percent). Comparison of the physical properties and degradation behavior of these polymers revealed divergent characteristics arising from differences in the nature of the carbohydrate building blocks. P(IU) is more thermally stable and has a lower glass transition temperature ( = 369 °C, = -10 °C) than P(GDLU) ( = 206 °C, = 32 °C) and P(GDLUIU) ( = 210 and 203 °C, = 1 and 7 °C). While all of the polymers were stable in acidic and neutral aqueous conditions, the two analogs containing GDLU hydrolytically degraded in the presence of base. Tensile testing of the systems revealed that both homopolymers are brittle materials while the P(GDLU--IU) is more tough. Notably, P(GDLUIU) was found to be a rubbery material with a low Young's modulus (0.020 and 0.002 GPa, respectively), displaying an average elongation at break of 480 and 640%, and shape memory properties.
将葡萄糖衍生物异山梨醇和葡糖双内酯与蓖麻油衍生物10-十一碳烯酰氯一起使用,合成了两种单体:葡糖双内酯十一碳烯酸酯(GDLU)和异山梨醇十一碳烯酸酯(IU)。这些单体通过开环二烯复分解(ADMET)聚合反应生成了两种均聚物P(GDLU)和P(IU),以及两种具有相似数均分子量和相对组成(51和61 kDa,Đ = 1.8和1.4,46:54和52:48摩尔百分比)的共聚物P(GDLUIU)和P(GDLUIU)。对这些聚合物的物理性质和降解行为进行比较后发现,由于碳水化合物结构单元性质的差异,产生了不同的特性。与P(GDLU)(Tdec = 206 °C,Tg = 32 °C)和P(GDLUIU)(Tdec = 210和203 °C,Tg = 1和7 °C)相比,P(IU)具有更高的热稳定性和更低的玻璃化转变温度(Tdec = 369 °C,Tg = -10 °C)。虽然所有聚合物在酸性和中性水性条件下都很稳定,但两种含有GDLU的类似物在碱的存在下会发生水解降解。对这些体系进行拉伸测试表明,两种均聚物都是脆性材料,而P(GDLU-IU)更坚韧。值得注意的是,P(GDLUIU)被发现是一种具有低杨氏模量(分别为0.020和0.002 GPa)的橡胶状材料,平均断裂伸长率为48%和640%,并具有形状记忆特性。