Institute of Biophysics SB RAS, Federal Research Center "Krasnoyarsk Science Center SB RAS", 50/50 Akademgorodok, Krasnoyarsk 660036, Russia.
Basic Department of Biotechnology, School of Fundamental Biology and Biotechnology, Siberian Federal University, 79 Svobodnyi Av., Krasnoyarsk 660041, Russia.
Int J Mol Sci. 2023 Sep 14;24(18):14082. doi: 10.3390/ijms241814082.
The properties, features of thermal behavior and crystallization of copolymers containing various types of valerate monomers were studied depending on the set and ratio of monomers. We synthesized and studied the properties of three-component copolymers containing unusual monomers 4-hydroxyvalerate (4HV) and 3-hydroxy-4-methylvalerate (3H4MV), in addition to the usual 3-hydroxybutyrate (3HB) and 3-hydroxyvalerate (3HV) monomers. The results showed that P(3HB--3HV--4HV) and P(3HB--3HV--3H4MV) terpolymers tended to increase thermal stability, especially for methylated samples, including an increase in the gap between melting point (T) and thermal degradation temperature (T), an increase in the melting point and glass transition temperature, as well as a lower degree of crystallinity (40-46%) compared with P(3HB--3HV) (58-66%). The copolymer crystallization kinetics depended on the set and ratio of monomers. For terpolymers during exothermic crystallization, higher rates of spherulite formation (G) were registered, reaching, depending on the ratio of monomers, 1.6-2.0 µm/min, which was several times higher than the G index (0.52 µm/min) for the P(3HB--3HV) copolymer. The revealed differences in the thermal properties and crystallization kinetics of terpolymers indicate that they are promising polymers for processing into high quality products from melts.
研究了含有各种戊酸单体的共聚物的性能、热行为和结晶特性,这些共聚物的单体组成和比例是可以调节的。我们合成并研究了含有不常见单体 4-羟基戊酸(4HV)和 3-羟基-4-甲基戊酸(3H4MV)的三元共聚物的性能,这些共聚物除了含有常见的 3-羟基丁酸(3HB)和 3-羟基戊酸(3HV)单体。结果表明,P(3HB--3HV--4HV)和 P(3HB--3HV--3H4MV)共聚物的热稳定性趋于增加,特别是对于甲基化的样品,包括熔点(T)和热降解温度(T)之间的差距增大、熔点和玻璃化转变温度升高,以及结晶度降低(40-46%),与 P(3HB--3HV)相比(58-66%)。共聚物的结晶动力学取决于单体的组成和比例。对于三元共聚物,在放热结晶过程中,形成球晶的速率(G)较高,达到 1.6-2.0 µm/min,取决于单体的比例,这比 P(3HB--3HV)共聚物的 G 指数(0.52 µm/min)高几倍。三元共聚物在热性能和结晶动力学方面的差异表明,它们是有前途的聚合物,可以从熔体中加工成高质量的产品。