Lee Jiyun, Hwangbo Seonae
Department of Chemical and Biomolecular Engineering, College of Engineering Yonsei University, 50 Yonsei Ro, Seodaemun Gu, Seoul 038722, Republic of Korea.
R&D Center, FUST Lab Co., Ltd., 11-3, Techno 1-rom Tuseong-gu, #N102, Daejeon, Republic of Korea.
Ultrasonics. 2025 Jan;145:107462. doi: 10.1016/j.ultras.2024.107462. Epub 2024 Sep 8.
Stable-state emulsions with no phase separation and dispersed-particle aggregation can be utilized in various fields, such as cosmetics, pharmaceuticals, food, and drug delivery. However, the physicochemical properties and stability of emulsions are significantly affected by factors such as concentration, mixing method, droplet size, and temperature. Surfactants (emulsifiers), which are used to form stable emulsions, adversely affect the human body and environment and influence the properties of emulsions, thereby limiting their development. This study manufactured stable emulsions without a surfactant using ultrasonic equipment. The oil particle size distributions, zeta potentials, microscopic observations, and emulsion stabilities of six emulsions (with an oil content of 1 %) prepared using different frequencies (250-1000 kHz) and output powers (50-150 W) were analyzed, immediately after preparation at 25 °C and 3 d thereafter. Finally, it was possible to manufacture a stable emulsion without particle size change or phase separation with a particle size in the 100 nm range and a surface charge value of -40 mV or more under conditions of 400 kHz and 150 W. This study proposed a method (with the optimum conditions) for manufacturing surfactant-free emulsions by analyzing the stability of emulsions manufactured under various frequencies and output-power conditions. The proposed method could open new frontiers in emulsion development and applications.
无相分离和分散颗粒聚集的稳态乳液可用于化妆品、制药、食品和药物递送等各个领域。然而,乳液的物理化学性质和稳定性会受到浓度、混合方法、液滴大小和温度等因素的显著影响。用于形成稳定乳液的表面活性剂(乳化剂)会对人体和环境产生不利影响,并影响乳液的性质,从而限制了它们的发展。本研究使用超声设备制备了不含表面活性剂的稳定乳液。分析了在25℃制备后立即以及此后3天,使用不同频率(250 - 1000kHz)和输出功率(50 - 150W)制备的六种乳液(含油率1%)的油粒径分布、zeta电位、微观观察和乳液稳定性。最后,在400kHz和150W的条件下,可以制备出粒径在100nm范围内、表面电荷值为-40mV或更高且粒径无变化或无相分离的稳定乳液。本研究通过分析在各种频率和输出功率条件下制备的乳液的稳定性,提出了一种制备无表面活性剂乳液的方法(以及最佳条件)。所提出的方法可为乳液的开发和应用开辟新的领域。