Wang Shichao, Chen Wei, Xiang Hengxue, Yang Junjie, Zhou Zhe, Zhu Meifang
State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, College of Materials Science and Engineering, Donghua University, Shanghai 201620, China.
Polymers (Basel). 2016 Jul 28;8(8):273. doi: 10.3390/polym8080273.
As the only kind of naturally-occurring biopolyester synthesized by various microorganisms, polyhydroxyalkanoate (PHA) shows a great market potential in packaging, fiber, biomedical, and other fields due to its biodegradablity, biocompatibility, and renewability. However, the inherent defects of scl-PHA with low 3HV or 4HB content, such as high stereoregularity, slow crystallization rate, and particularly the phenomena of formation of large-size spherulites and secondary crystallization, restrict the processing and stability of scl-PHA, as well as the application of its products. Many efforts have focused on the modification of scl-PHA to improve the mechanical properties and the applicability of obtained scl-PHA products. The modification of structure and property together with the potential applications of scl-PHA are covered in this review to give a comprehensive knowledge on the modification and processing of scl-PHA, including the effects of physical blending, chemical structure design, and processing conditions on the crystallization behaviors, thermal stability, and mechanical properties of scl-PHA.
聚羟基脂肪酸酯(PHA)是由各种微生物合成的唯一一种天然存在的生物聚酯,由于其具有生物可降解性、生物相容性和可再生性,在包装、纤维、生物医学等领域展现出巨大的市场潜力。然而,低3HV或4HB含量的短链PHA存在固有缺陷,如高立构规整性、缓慢的结晶速率,尤其是形成大尺寸球晶和二次结晶的现象,这限制了短链PHA的加工性能和稳定性及其产品的应用。许多研究致力于对短链PHA进行改性,以改善其机械性能和所得短链PHA产品的适用性。本文综述了短链PHA的结构和性能改性及其潜在应用,以便全面了解短链PHA的改性和加工,包括物理共混、化学结构设计和加工条件对短链PHA结晶行为、热稳定性和机械性能的影响。