CNPC Engineering Technology R&D Company Limited, Beijing 102206, China.
MOE Engineering Research Center of Forestry Biomass Materials and Energy, Ministry of Education, Beijing Forestry University, Beijing 100083, China.
Molecules. 2023 Mar 30;28(7):3091. doi: 10.3390/molecules28073091.
As an important forestry biomass resource, rosin has a wide range of applications in medicine, adhesives, surfactants and other fields. Using natural dehydroabietic acid as a raw material, dehydroabietic acid-based phosphorus monoester (DPM) and diester (DPD) surfactants were designed and synthesized. The chemical structures and self-assembly properties were characterized by FT-IR, NMR and TEM, and the effects of pH on critical micelle concentration, γ, emulsifying properties, foam properties and micelle morphology were studied. The results showed that the CMC, γ value and aggregate morphology had certain pH responsiveness. The γ value under acidic conditions was smaller than γ under alkaline conditions, and the foaming performance and foam stability under acidic conditions were better than those under alkaline conditions. TEM micelle morphology studies have shown that DPM and DPD surfactants can self-assemble into rod-shaped and spherical micelle morphologies with a pH change in an aqueous solution. At the same pH, the foaming and emulsification properties of DPD were better than those of DPM. The best foaming and emulsification ability of DPD were 11.8 mL and 175 s, respectively. At the same time, the foaming ability of DPD is also affected by pH. DPD has excellent foaming properties in acidic conditions, but these disappeared in neutral conditions.
松香作为一种重要的林业生物质资源,在医药、胶粘剂、表面活性剂等领域有着广泛的应用。以天然脱氢枞酸为原料,设计并合成了脱氢枞酸基磷单酯(DPM)和磷双酯(DPD)表面活性剂。通过 FT-IR、NMR 和 TEM 对其化学结构和自组装性能进行了表征,并研究了 pH 值对临界胶束浓度(CMC)、γ值、乳化性能、泡沫性能和胶束形态的影响。结果表明,CMC、γ 值和聚集形态具有一定的 pH 响应性。酸性条件下的γ值小于碱性条件下的γ值,酸性条件下的起泡性能和泡沫稳定性优于碱性条件下的。TEM 胶束形态研究表明,DPM 和 DPD 表面活性剂在水溶液中可自组装成棒状和球形胶束形态,随着 pH 值的变化。在相同 pH 值下,DPD 的起泡和乳化性能优于 DPM。DPD 的最佳起泡和乳化能力分别为 11.8 mL 和 175 s。同时,DPD 的起泡能力也受到 pH 值的影响。DPD 在酸性条件下具有优异的起泡性能,但在中性条件下这些性能消失。