Niu Deyu, Shen Tianfeng, Xu Pengwu, Yu Manman, Liu Tianxi, Yang Weijun, Wang Zhenyu, Ma Piming
The Key Laboratory of Synthetic and Biological Colloids, Ministry of Education, Jiangnan University, 1800 Lihu Road, Wuxi 214122, China.
The Key Laboratory of Synthetic and Biological Colloids, Ministry of Education, Jiangnan University, 1800 Lihu Road, Wuxi 214122, China.
Int J Biol Macromol. 2023 Apr 15;234:123584. doi: 10.1016/j.ijbiomac.2023.123584. Epub 2023 Feb 15.
The application of poly(lactic acid) (PLA) is limited by its low crystallization rate. Conventional methods to increase crystallization rate usually result in a significant loss of transparency. In this work, a bundled bis-amide organic compound N'-(3-(hydrazinyloxy)benzoyl)-1-naphthohydrazide (HBNA) was used as a nucleator to prepare PLA/HBNA blends with enhanced crystallization, heat resistance and transparency. HBNA dissolves in PLA matrix at high temperature and self-assembles into bundle microcrystals by intermolecular hydrogen bonding at a lower temperature, which induces PLA to form ample spherulites and "shish-kebab-like" structure rapidly. The effects of HBNA assembling behavior and nucleation activity on the PLA properties and the corresponding mechanism are systematically investigated. As a result, the crystallization temperature of PLA increased from 90 °C to 123 °C by adding as low as 0.75 wt% of HBNA, and the half-crystallization time (t) at 135 °C decreased from 31.0 min to 1.5 min. More importantly, the PLA/HBNA maintains good transparency (transmittance > 75 % and haze is ca. 27 %) due to the decreased crystal size, even though the crystallinity of PLA is increased to 40 %, which also led to good heat resistance. The present work is expected to expand the application of PLA in packaging and other fields.
聚乳酸(PLA)的应用受到其低结晶速率的限制。提高结晶速率的传统方法通常会导致透明度显著损失。在这项工作中,一种束状双酰胺有机化合物N'-(3-(肼氧基)苯甲酰基)-1-萘甲酰肼(HBNA)被用作成核剂,以制备具有增强结晶性、耐热性和透明度的PLA/HBNA共混物。HBNA在高温下溶解于PLA基体中,并在较低温度下通过分子间氢键自组装成束状微晶,这促使PLA迅速形成大量球晶和“串晶状”结构。系统研究了HBNA的组装行为和成核活性对PLA性能的影响及其相应机理。结果表明,通过添加低至0.75 wt%的HBNA,PLA的结晶温度从90℃提高到123℃,在135℃下的半结晶时间(t)从31.0分钟降至1.5分钟。更重要的是,尽管PLA的结晶度提高到40%,但由于晶体尺寸减小,PLA/HBNA仍保持良好的透明度(透光率>75%,雾度约为27%),这也使其具有良好的耐热性。本工作有望拓展PLA在包装等领域的应用。