Department of Applied Chemistry and Biotechnology, Graduate School and Faculty of Engineering, Chiba University, 1-33 Yayoi-cho, Inage-ku, Chiba 263-8522, Japan.
Phys Chem Chem Phys. 2022 May 11;24(18):11382-11394. doi: 10.1039/d2cp01273a.
Structures and properties of isolated and crystalline poly(ε-caprolactone) (PCL) chains have been investigated. molecular orbital (MO) calculations were conducted for methyl 6-acetoxyhexanoate (MAH), a model compound of PCL, to yield Gibbs free energies of all its existent conformers. Bond conformations of its seven bonds corresponding to the repeating unit of PCL were calculated therefrom; two C-C bonds close to the ester group show preferences owing to intramolecular C-H⋯O attractions, and the other five prefer forms. H and C NMR vicinal coupling constants of C-labeled MAH yielded bond conformations consistent with the MO calculations. The rotational isomeric state (RIS) calculations on PCL led to the characteristic ratios (4.1-4.5) that agree with those estimated experimentally from the Stockmayer-Fixman plots. Periodic density functional theory calculations on PCL crystals yielded the optimum structures and Young's moduli in the -, -, and (fiber)-axis directions. The fiber-axis modulus (252 GPa) falls short of that (333 GPa) of polyethylene but exceeds that (182 GPa) of poly(ethylene terephthalate), whereas the three-dimensionally averaged Young's modulus (10.7 GPa) of PCL is the smallest of those of representative polymers investigated so far. The enzymatic selectivity of biodegradable polyesters is discussed herein in terms of their conformational characteristics and surface structures of enzymes.
已研究了分离和结晶聚(ε-己内酯)(PCL)链的结构和性质。对甲基 6-乙酰氧基己酸酯(MAH)进行了分子轨道(MO)计算,MAH 是 PCL 的模型化合物,得出了其所有存在构象的吉布斯自由能。由此计算了其对应于 PCL 重复单元的七个键的键构象;酯基附近的两个 C-C 键由于分子内 C-H⋯O 吸引而表现出偏好,而另外五个键则偏好其他形式。C 标记 MAH 的 H 和 C NMR 邻接偶合常数与 MO 计算一致。对 PCL 的旋转异构态(RIS)计算得到了特征比(4.1-4.5),与从 Stockmayer-Fixman 图实验估算的特征比一致。对 PCL 晶体的周期性密度泛函理论计算得出了在 -、- 和 (纤维)-轴方向的最佳结构和杨氏模量。纤维轴模量(252 GPa)低于聚乙烯的模量(333 GPa),但高于聚对苯二甲酸乙二醇酯的模量(182 GPa),而 PCL 的三维平均杨氏模量(10.7 GPa)是迄今为止研究的代表性聚合物中最小的。本文从可生物降解聚酯的构象特征和酶的表面结构讨论了其酶的选择性。