Li Maohua, Guan Chenxi, Zhi Yaolong, Li Jindong, Sun Shouyi, Zhuang Xinchen, Fang Yu, Peng Junxia
Key Laboratory of Applied Surface and Colloid Chemistry of Ministry of Education, Shaanxi Key Laboratory of New Concept Sensors and Molecular Materials, School of Chemistry and Chemical Engineering, Shaanxi Normal University, Xi'an 710119, China.
State Key Laboratory of Clean and Efficient Turbomachinery Power Equipment, School of Mechanies, Civil Engineering and Architecture, Northwestern Polytechnical University, Xi'an 710072, China.
ACS Appl Mater Interfaces. 2025 Aug 13;17(32):46197-46207. doi: 10.1021/acsami.5c09742. Epub 2025 Aug 5.
The development of supramolecular gel lubricants with excellent rheological properties is critical for high-performance lubrication. Although hydrophobic deep eutectic solvents (HDESs) have shown considerable potential as lubricants, eutectogels containing HDESs remain largely unexplored. Herein, we report the first water-resistant supramolecular eutectogel based on HDES, exhibiting an outstanding thixotropic behavior and lubrication performance. Notably, MoS flakes incorporated within the obtained supramolecular eutectogel exhibit uniform dispersion and long-term stability without aggregation, yielding a highly stable composite supramolecular eutectogel. As prepared supramolecular eutectogels without and with MoS flakes display excellent water-resistant properties, showing negligible changes after being immersed in water for more than 9 months. Both the eutectogel and its MoS-doped counterpart exhibit characteristic shear-thinning behavior and remarkable thixotropy with instant and reversible sol-gel transitions. Importantly, these superior rheological properties persist at -10 °C. These thixotropic properties ensure the formation of a stable tribofilm throughout the friction process, effectively reducing the shear strength of friction-pair surfaces and promoting relative sliding. As a result, the MoS-doped eutectogel achieves a low coefficient of friction (COF), with an average value of 0.07. Moreover, the MoS-doped supramolecular gel lubricant significantly enhances antiwear performance while sustaining excellent lubrication effects in a simulated locking mechanism of landing gear. This work provides valuable insights for developing green and higher-performance supramolecular gel lubricants, offering potential solutions to the limitations of conventional lubricants.
开发具有优异流变性能的超分子凝胶润滑剂对于高性能润滑至关重要。尽管疏水性低共熔溶剂(HDESs)作为润滑剂已显示出相当大的潜力,但含HDESs的低共熔凝胶在很大程度上仍未得到充分探索。在此,我们报道了首例基于HDES的防水超分子低共熔凝胶,其表现出出色的触变性行为和润滑性能。值得注意的是,掺入所得超分子低共熔凝胶中的MoS薄片表现出均匀分散且长期稳定而不聚集,从而产生高度稳定的复合超分子低共熔凝胶。制备的不含和含有MoS薄片的超分子低共熔凝胶均表现出优异的防水性能,在水中浸泡9个月以上后变化可忽略不计。低共熔凝胶及其MoS掺杂对应物均表现出典型的剪切变稀行为和显著的触变性,具有即时且可逆的溶胶-凝胶转变。重要的是,这些优异的流变性能在-10°C时依然存在。这些触变性确保在整个摩擦过程中形成稳定的摩擦膜,有效降低摩擦副表面的剪切强度并促进相对滑动。结果,MoS掺杂的低共熔凝胶实现了低摩擦系数(COF),平均值为0.07。此外,MoS掺杂的超分子凝胶润滑剂在起落架模拟锁定机构中显著增强了抗磨性能,同时保持了优异的润滑效果。这项工作为开发绿色和高性能超分子凝胶润滑剂提供了有价值的见解,为传统润滑剂的局限性提供了潜在解决方案。