Wang Zeping, O'Young Lionel, Mahmood Sajid, Chen George Zheng, Zheng Yitao, Hu Binjie
Green Chemicals & Energy Process Development Laboratory, China Beacons Institute, University of Nottingham Ningbo China 199 Taikang East Road Ningbo 315000 China.
Low Dimensional Materials Research Center, Khazar University Baku AZ1096 Azerbaijan.
RSC Adv. 2025 Mar 6;15(9):7181-7190. doi: 10.1039/d4ra06614f. eCollection 2025 Feb 26.
Cellulose nanocrystals (CNC) are widely used due to their biodegradability, high strength, large surface area, and functional versatility. This study investigates the interaction between CNC and acrylate emulsions, which mainly focuses on their impact on emulsion characteristics, polymerization behaviour, and storage stability. CNC was incorporated into an acrylate miniemulsion system at varying concentrations, followed by the systematic study of its effects on particle size, interfacial tension, zeta potential, yield, and viscosity. The morphology of CNC-acrylate systems was analysed using infrared spectroscopy and scanning electron microscopy (SEM). The results demonstrated that CNC effectively co-stabilized acrylate miniemulsions and enhanced their stability before polymerization. Although CNC did not directly participate in polymerization or affect yield or reaction rates, it slowed the diffusion of free radicals. However, CNC concentrations higher than 1 wt% negatively impacted post-polymerization storage stability and caused aggregation of droplets. These findings reveal the dual role of CNC as both a stabilizing and aggregating agent, offering new insights into its potential for the design of advanced polymer systems.
纤维素纳米晶体(CNC)因其生物可降解性、高强度、大表面积和功能多样性而被广泛使用。本研究调查了CNC与丙烯酸酯乳液之间的相互作用,主要关注它们对乳液特性、聚合行为和储存稳定性的影响。将不同浓度的CNC加入丙烯酸酯微乳液体系中,随后系统研究其对粒径、界面张力、zeta电位、产率和粘度的影响。使用红外光谱和扫描电子显微镜(SEM)分析了CNC-丙烯酸酯体系的形态。结果表明,CNC有效地共同稳定了丙烯酸酯微乳液,并在聚合前提高了其稳定性。虽然CNC没有直接参与聚合反应,也没有影响产率或反应速率,但它减缓了自由基的扩散。然而,高于1 wt%的CNC浓度对聚合后的储存稳定性产生负面影响,并导致液滴聚集。这些发现揭示了CNC作为稳定剂和聚集剂的双重作用,为其在先进聚合物体系设计中的潜力提供了新的见解。