Gao Aiqin, Jing Mingxiao, Liang Jiahui, Zheng Changwu, Ma Teng, Song Xiyu, Hou Aiqin, Xie Kongliang
College of Chemistry, Chemical Engineering and Biotechnology, Donghua University, Shanghai 201620, PR China.
Shaoxing Key Laboratory of High Performance Fibers & Products, Shaoxing University, Shaoxing, Zhejiang 312000, PR China.
ACS Nano. 2025 Aug 12;19(31):28229-28241. doi: 10.1021/acsnano.5c04864. Epub 2025 Jul 29.
Designing smart molecular nanogels and nanogel actuators that can intelligently change the surface activity and controllably adjust the nanogel molecular arrangement has been a major challenge in the field of smart materials. Here, a series of ionic liquids composed of imidazolium ionic headgroups, alkyl chain spacers, and a photoresponsive azobenzene unit were designed. They can form smart ionic liquid nanogels with low melting points and construct smart nanogel actuators by light-trigger. The intelligent ionic liquid nanogels can be used to construct stable oil-water smart emulsions with photocontrollable actuators, which have the ability of reversible emulsification and demulsification triggered by light. The intelligent emulsions are applied to efficiently extract cinnamon oil from biomass cinnamon bark by a solvothermal method at low temperature. Cinnamaldehyde can be efficiently separated using intelligent reversible demulsification by the photocontrollable actuator. Cinnamaldehyde with a high purity of 97.21% can be obtained by the smart nanogel actuator. In a single extraction, the distributions of the smart ionic liquid in the water phase, the oil phase, and the cinnamon phase are 0.99%, 8.19%, and 90.82%, respectively. The total recovery rate of the smart ionic liquid is 95.53%. After three cycles, the extraction rate of cinnamon remains at 92.67%. 2D correlation FTIR spectra, H NMR, and DFT calculations indicate that the constructed ionic liquid nanogels have strong supramolecular interaction with lignin macromolecules, the special ability to disassemble hydrogen bonds on lignin, and the ability to quickly swell lignin fibers. The smart ionic liquid nanogel actuator provides an advanced platform for efficient extraction of sensitive compounds and smart oil-water separation.
设计能够智能改变表面活性并可控调节纳米凝胶分子排列的智能分子纳米凝胶和纳米凝胶致动器一直是智能材料领域的一项重大挑战。在此,设计了一系列由咪唑鎓离子头基、烷基链间隔基和光响应性偶氮苯单元组成的离子液体。它们可以形成低熔点的智能离子液体纳米凝胶,并通过光触发构建智能纳米凝胶致动器。智能离子液体纳米凝胶可用于构建具有光控致动器的稳定油-水智能乳液,该乳液具有光触发的可逆乳化和破乳能力。该智能乳液用于在低温下通过溶剂热法从生物质肉桂皮中高效提取肉桂油。通过光控致动器的智能可逆破乳可有效分离肉桂醛。使用智能纳米凝胶致动器可获得纯度高达97.21%的肉桂醛。在一次萃取中,智能离子液体在水相、油相和肉桂相中的分布分别为0.99%、8.19%和90.82%。智能离子液体的总回收率为95.53%。经过三个循环后,肉桂的萃取率仍保持在92.67%。二维相关傅里叶变换红外光谱、核磁共振氢谱和密度泛函理论计算表明,所构建的离子液体纳米凝胶与木质素大分子具有强烈的超分子相互作用,具有拆解木质素上氢键的特殊能力以及快速溶胀木质素纤维的能力。智能离子液体纳米凝胶致动器为高效提取敏感化合物和智能油水分离提供了一个先进的平台。