Acta Chimica Sinica ›› 2022, Vol. 80 ›› Issue (6): 765-771.DOI: 10.6023/A21120567 Previous Articles     Next Articles

Article

马来松香酸和纳米氧化铝颗粒协同稳定具有pH响应性的Pickering乳液

贺续发a, 贾康乐b,*(), 余龙飞b,*(), 刘明杰b, 郑小珊b, 李欢玲b, 辛锦兰b, 黄淋佳b,*()   

  1. a 广东工业大学轻工化工学院 广州 510006
    b 广东省科学院化工研究所广东省工业表面活性剂重点实验室 广州 510665
  • 投稿日期:2021-12-16 发布日期:2022-07-07
  • 通讯作者: 贾康乐, 余龙飞, 黄淋佳
  • 基金资助:
    国家自然科学基金(21802025)

pH-Responsive Pickering Emulsions Synergistically Stabilized by Maleopimaric Acid and Alumina Nanoparticles

Xufa Hea, Kangle Jiab(), Longfei Yub(), Mingjie Liub, Xiaoshan Zhengb, Huanling Lib, Jinlan Xinb, Linjia Huangb()   

  1. a College of Chemical Engineering and Light Industry, Guangdong University of Technology, Guangzhou 510006
    b Guangdong Provincial Key Laboratory of Industrial Surfactant, Institute of Chemical Engineering, Guangdong Academy of Sciences, Guangzhou 510665
  • Received:2021-12-16 Published:2022-07-07
  • Contact: Kangle Jia, Longfei Yu, Linjia Huang
  • Supported by:
    National Natural Science Foundation of China(21802025)

Using organic particles to stabilize Pickering emulsions has attracted more and more attention. However, Pickering emulsions synergistically stabilized by organic particles with adjustable wettability combined with inorganic particles is rarely reported. Herein, maleopimaric acid (MPA) with multi-carboxylic acid groups and alumina nanoparticles are used to stabilize Pickering emulsions, and the transitions of the type of Pickering emulsions induced by pH and related mechanisms are systematically studied. With the increase of pH, resulting in the change of the type of emulsions from a W/O Pickering emulsion to an O/W Pickering emulsion to an O/W emulsion when only MPA is used. The increase of the hydrophilicity of MPA is the reason for the transformation of the emulsion. When alumina nanoparticles are added to the system, W/O Pickering emulsions can be transformed into O/W Pickering emulsions (pH=1), which is attributed to the increase of the hydrophilicity of MPA particles caused by the adsorption of alumina nanoparticles on the surface of MPA particles. When pH=6, both MPA particles and alumina nanoparticles have strong hydrophilicity and cannot form stable emulsions respectively, but the mixture of the two can form stable W/O Pickering emulsions. It is because that MPA particles and alumina nanoparticles can form hydrophobic complexes in aqueous solution. In addition, the influence of MPA concentration and volume fraction of oil phase on the appearance and droplet size of Pickering emulsion is studied. It is found that the droplet size of Pickering emulsion gradually decreases with the increase of MPA concentration. However, the increase of volume fraction of oil phase will cause the increase of droplet size. Finally, the stability mechanism of Pickering emulsion is studied by the measurement of Zeta potential, adsorption rate of particles at the oil-water interface, three phase contact angle and surface/interface tensions. The armor-like particles layer adsorbed on the oil-water interface and the network structure formed between the particles are the reason for the stability of emulsion droplets. This study provides a new avenue for the green preparation of Pickering emulsions, which will be important applications in the fields of cosmetics, medicine and new materials.

Key words: maleopimaric acid, pickering emulsions, alumina nanoparticles, phase transition, synergistic stable