Xie Rongzhen, Tan Zhijian, Fan Wei, Qin Jingping, Guo Shiyin, Xiao Hang, Tang Zhonghai
Hunan Engineering Technology Research Center for Rapeseed Oil Nutrition Health and Deep Development, College of Food Science and Technology, Hunan Agricultural University, Changsha 410128, China.
Institute of Bast Fiber Crops, Chinese Academy of Agricultural Sciences, Changsha 410205, China.
Foods. 2024 Jul 21;13(14):2293. doi: 10.3390/foods13142293.
Deep eutectic solvents (DESs) have received extensive attention in green chemistry because of their ease of preparation, cost-effectiveness, and low toxicity. Pickering emulsions offer advantages such as long-term stability, low toxicity, and environmental friendliness. The oil phase in some Pickering emulsions is composed of solvents, and DESs can serve as a more effective alternative to these solvents. The combination of DESs and Pickering emulsions can improve the applications of green chemistry by reducing the use of harmful chemicals and enhancing sustainability. In this study, a Pickering emulsion consisting of a DES (menthol:octanoic acid = 1:1) in water was prepared and stabilized using starch nanoparticles (SNPs). The emulsion was thoroughly characterized using various techniques, including optical microscopy, transmission microscopy, laser particle size analysis, and rheological measurements. The results demonstrated that the DES-in-water Pickering emulsion stabilized by the SNPs had excellent stability and retained its structural integrity for more than 200 days at room temperature (20 °C). This prolonged stability has significant implications for many applications, particularly in the field of storage and transportation. This Pickering emulsion based on DESs and SNPs is sustainable and stable, and it has great potential to improve green chemistry practices in various fields.
深共熔溶剂(DESs)因其易于制备、成本效益高和低毒性而在绿色化学领域受到广泛关注。皮克林乳液具有长期稳定性、低毒性和环境友好等优点。一些皮克林乳液的油相由溶剂组成,而DESs可以作为这些溶剂更有效的替代品。DESs与皮克林乳液的结合可以通过减少有害化学物质的使用和增强可持续性来改善绿色化学的应用。在本研究中,制备了一种由水相中的DES(薄荷醇:辛酸 = 1:1)组成的皮克林乳液,并使用淀粉纳米颗粒(SNPs)使其稳定。使用各种技术对该乳液进行了全面表征,包括光学显微镜、透射显微镜、激光粒度分析和流变学测量。结果表明,由SNPs稳定的水包DES皮克林乳液具有优异的稳定性,在室温(20°C)下其结构完整性保持超过200天。这种延长的稳定性对许多应用具有重要意义,特别是在储存和运输领域。这种基于DESs和SNPs的皮克林乳液具有可持续性和稳定性,在改善各个领域的绿色化学实践方面具有巨大潜力。