Anžlovar Alojz, Pavlica Damjan Jan, Pahovnik David, Žagar Ema
Department of Polymer Chemistry and Technology, National Institute of Chemistry, Hajdrihova 19, SI-1000 Ljubljana, Slovenia.
Int J Mol Sci. 2023 Oct 7;24(19):14980. doi: 10.3390/ijms241914980.
Di(cyclopentadienecarboxylic acid) dimethyl ester (DCPDME) is a potential dynamic covalent system. When such molecules are used as dynamic crosslinkers in polymers, understanding the reversibility of cyclopentadiene dimerization is crucial to determine optimal melt processing conditions. To this end, we synthesized DCPDME, which consists of three regioisomers with different physicochemical properties, which were investigated by isolating them and further characterizing them using H NMR, FTIR and DSC. There have been many attempts to improve the synthesis process to increase the reaction yield and purity of isomer 3, and this goal remains a challenge today. In this work, we show that pure isomers 1 and 2 irreversibly convert to the more stable DCPDME isomer 3 at temperatures between 120 and 140 °C in N. This shows that isolation of the pure isomer 3 from the DCPDME isomer mixture is not necessary. The DCPDME isomer 3 is reversibly cleaved to the monomeric cyclopentadienecarboxylic acid methyl ester (CPME), as confirmed with GC-MS and the resulting mass spectrum. The conversion of DCPDME isomers 1 and 2 to isomer 3 was confirmed by heating the synthesized mixture of DCPDME isomers at 135 °C for 5 min in N, producing an almost pure isomer 3 which increased its synthesis yield by 35%.
二(环戊二烯羧酸)二甲酯(DCPDME)是一种潜在的动态共价体系。当此类分子用作聚合物中的动态交联剂时,了解环戊二烯二聚反应的可逆性对于确定最佳熔体加工条件至关重要。为此,我们合成了DCPDME,它由三种具有不同物理化学性质的区域异构体组成,通过分离它们并使用核磁共振氢谱(¹H NMR)、傅里叶变换红外光谱(FTIR)和差示扫描量热法(DSC)对其进一步表征来进行研究。已经有许多尝试来改进合成工艺以提高异构体3的反应产率和纯度,而这一目标如今仍然是一项挑战。在这项工作中,我们表明,纯异构体1和2在氮气氛围中120至140°C的温度下不可逆地转化为更稳定的DCPDME异构体3。这表明从DCPDME异构体混合物中分离出纯异构体3并非必要。经气相色谱 - 质谱联用(GC - MS)及所得质谱证实,DCPDME异构体3可可逆地裂解为单体环戊二烯羧酸甲酯(CPME)。通过在氮气氛围中将合成的DCPDME异构体混合物在135°C下加热5分钟,证实了DCPDME异构体1和2向异构体3的转化,得到了几乎纯的异构体3,其合成产率提高了35%。