JRU IATE 1208-CIRAD/INRA/Montpellier Supagro, University of Montpellier, Montpellier F-34060, France.
ICGM, CNRS, ENSCM, University of Montpellier, Montpellier F-34095, France.
Biomacromolecules. 2020 Dec 14;21(12):4709-4723. doi: 10.1021/acs.biomac.0c00826. Epub 2020 Oct 29.
Poly(3-hydroxybutyrate--3-hydroxyvalerate) (P(3HB-3HV)) copolymer's properties depend on (i) the molar fraction of comonomers, (ii) the overall molar mass, and (ii) the chemical compositional distribution. This work aims at providing a better understanding of the effect of the P(3HB-3HV) molecular structure, produced from mixed cultures and waste feedstock, on copolymer crystallization and tensile properties. Conventional biopolymer characterization methods (differential scanning calorimetry, X-ray diffraction, and polarized optical microscopy) were coupled to both classical one-dimensional (H and C) and advanced two-dimensional (diffusion-ordered spectroscopy (DOSY) and H/C heteronuclear single quantum coherence (HSQC)) nuclear magnetic resonance (NMR) spectroscopy techniques. The obtained results evidenced that (i) a high-quality copolymer could be achieved, even from a waste feedstock; (ii) increasing the 3HV content displayed a positive impact on P(3HB-3HV) mechanical properties only if good interactions between 3HB and 3HV moieties were established; and (iii) the purification process eliminated short-length 3HV-rich chains and promoted homogeneous co-crystallization. Such optimized microstructures enabled the maximal stress and strain at break to be increased by +41.2 and +100%, respectively.
聚(3-羟基丁酸酯-3-羟基戊酸酯)(P(3HB-3HV))共聚物的性质取决于:(i)共聚单体的摩尔分数,(ii)总摩尔质量,和(iii)化学组成分布。本工作旨在更好地理解由混合培养物和废原料生产的 P(3HB-3HV)分子结构对共聚物结晶和拉伸性能的影响。常规生物聚合物特性分析方法(差示扫描量热法、X 射线衍射和偏光显微镜)与经典一维(H 和 C)和先进二维(扩散排序光谱学(DOSY)和 H/C 异核单量子相干(HSQC))核磁共振(NMR)光谱技术相结合。获得的结果表明:(i)即使使用废原料,也可以获得高质量的共聚物;(ii)增加 3HV 含量对 P(3HB-3HV)机械性能有积极影响,前提是 3HB 和 3HV 部分之间建立了良好的相互作用;(iii)纯化过程去除了短链 3HV 富集链,并促进了共晶均匀化。这种优化的微观结构使最大应力和断裂伸长率分别提高了+41.2%和+100%。