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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Renewable Thermosets and Thermoplastics from Itaconic Acid
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Renewable Thermosets and Thermoplastics from Itaconic Acid

机译:来自衣康酸的可再生热固性热固性和热塑性塑料

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Renewable materials are a research necessity, with the creation of a sustainable chemical industry representing a grand challenge for the field of chemistry and materials science. On this basis, biorenewable resources are being transformed into degradable or recyclable high value polymers with a diverse array of applications. Itaconic acid (IA) is a notable biorenewable resource due to its low cost and large annual production. We report the synthesis of renewable thermosets and thermoplastics that are almost completely derived from IA. Using catalytic, solvent-free, and high yielding transformations from an itaconate source, we efficiently synthesized a saturated diol, a saturated diester, and an unsaturated diester. Subsequent binary step-growth polycondensation polymerizations between the diol and either diester generated polyesters with relatively high molar masses (10 kg/mol). Ternary polymerizations of all three monomers in varying feed ratios produced polyesters with tunable amounts of unsaturated units along the backbone. Atom economies and low process mass intensities for these reactions reflect green processes. Thermoset materials were generated from these unsaturated terpolymers through thiol-ene click reactions with a potentially renewable cross-linker. We then established the tensile properties and molar mass between cross-links of these thermosets through mechanical testing and demonstrated hydrolytic stability under acidic and neutral conditions, but hydrolytic degradation under basic conditions. An alpha,omega-hydroxy terminated saturated polyester was prepared, functionalized with an atom transfer radical polymerization initiator, and then chain-extended with the alpha-methylene-gamma-butyrolactone, which can be derived from IA, to give triblock polymers.
机译:可再生材料是一项研究必要性,创造了一个可持续的化学工业,代表了化学和材料科学领域的大挑战。在此基础上,生物可行资源正在转化为可降解或可回收的高价值聚合物,具有各种应用。由于其低成本和年产量,衣康酸(IA)是一个值得注意的生物能源资源。我们报道了可再生热固性剂和热塑性塑料的合成,几乎完全来自IA。使用来自迭科源的催化,无溶剂和高产生的转化,我们有效地合成了饱和二醇,饱和二酯和不饱和二酯。在二醇和二酯产生的二元步长 - 生长缩聚聚合,二酯产生具有相对高摩尔质量(& 10kg / mol)的聚酯。所有三种单体的三元聚合在不同的饲料比中产生具有沿主链的可调谐量的不饱和单元的聚酯。这些反应的原子经济和低过程质量强度反映了绿色过程。通过硫醇-NE键与潜在可再生的交联剂的反应从这些不饱和三元共产生的热固性材料。然后,我们通过机械测试建立了这些热固性的交联之间的拉伸性能和摩尔质量,并在酸性和中性条件下显示了水解稳定性,但在碱性条件下水解降解。制备α,用原子转移自由基聚合引发剂官能化,然后用α-亚甲基-γ-丁内酯的链延伸,α-亚甲基-γ-丁内酯,其可以衍生自Ia,得到三嵌段聚合物。

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