Huang Nengkun, Wang Fan, Zhang Ruihao, Cao Zhaolin, Sun Wen, Ma Yuting, Tan Jihuai, Zhu Xinbao
Jiangsu Co-Innovation Center of Efficient Processing and Utilization of Forest Resources, College of Chemical Engineering, Nanjing Forestry University, Nanjing 210037, China.
College of Light Industry and Food Science, Nanjing Forestry University, Nanjing 210037, China.
Molecules. 2024 May 27;29(11):2526. doi: 10.3390/molecules29112526.
The use of vegetable oil-dervied plasticizers to enhance the flexibility of polylactic acid (PLA) has received much attention due to their renewability, inexpensiveness and biodegradation. However, the double bonds in vegetable oil-based plasticizers limit their compatibility with PLA, resulting in PLA-derived products with reduced flexibility. Herein, we examined soybean oil-derived hydrogenated dimer acid-based polyethylene glycol methyl ether esters (HDA-2, 2 = 2, 4, 6 or 8, referring to the ethoxy units) developed via the direct esterification of saturated hydrogenated dimer acid and polyethylene glycol monomethyl ethers. The resulting HDA-2 was first used as a plasticizer for PLA, and the effects of the ethoxy units in HDA-2 on the overall performance of the plasticized PLA were systematically investigated. The results showed that, compared with PLA blended with dioctyl terephthalate (DOTP), the PLA plasticized by HDA-8 with the maximum number of ethoxy units (PLA/HDA-8) exhibited better low-temperature resistance (40.1 °C vs. 15.3 °C), thermal stability (246.8 °C vs. 327.6 °C) and gas barrier properties. Additionally, the biodegradation results showed that HDA-8 could be biodegraded by directly burying it in soil. All results suggest that HDA-8 could be used as green alternative to the traditional petroleum-based plasticizer DOTP, which is applied in the PLA industry.
由于植物油衍生的增塑剂具有可再生、价格低廉和可生物降解的特性,利用其提高聚乳酸(PLA)的柔韧性受到了广泛关注。然而,植物油基增塑剂中的双键限制了它们与PLA的相容性,导致PLA衍生产品的柔韧性降低。在此,我们研究了通过饱和氢化二聚酸与聚乙二醇单甲醚直接酯化反应制得的大豆油衍生的氢化二聚酸基聚乙二醇甲醚酯(HDA-2,2 = 2、4、6或8,指乙氧基单元的数量)。所得的HDA-2首次用作PLA的增塑剂,并系统研究了HDA-2中的乙氧基单元对增塑PLA整体性能的影响。结果表明,与掺有对苯二甲酸二辛酯(DOTP)的PLA相比,含有最大数量乙氧基单元的HDA-8增塑的PLA(PLA/HDA-8)表现出更好的低温抗性(40.1℃对15.3℃)、热稳定性(246.8℃对327.6℃)和气体阻隔性能。此外,生物降解结果表明,将HDA-8直接埋入土壤中可实现生物降解。所有结果表明,HDA-8可作为传统石油基增塑剂DOTP的绿色替代品应用于PLA工业。