TY - JOUR
T1 - MXene-reinforced supramolecular oleogel with dynamic reversibility for high-performance tribological and photothermal applications
AU - Wang, Tiantian
AU - Wang, Xinnan
AU - Wang, Yixin
AU - Liu, Shujuan
AU - Ye, Qian
AU - Zhou, Feng
N1 - Publisher Copyright:
© 2026 Elsevier Ltd.
PY - 2027/2
Y1 - 2027/2
N2 - Herein, cetyltrimethylammonium bromide (CTAB)-modified MXene nanosheets were combined with the bis-urea gelator N, N′-didodecyl-1,2-cyclohexyldiurea (DCHU) and base oils to construct MXene-based supramolecular oleogels. The oleogels, formed via hydrogen-bonding-mediated self-assembly, exhibited a gel transition temperature range of 67–75 °C and pronounced shear-thinning behavior, enabling shear-induced structural reconstruction and stable oil confinement. Compared to the 500SN base oil, the optimized rGel-CTAB-MX oleogel reduced the mean coefficient of friction (COF) by 44.22% to 0.111, decreased the wear volume by 89.91% to 12.73 × 104 μm3, and enhanced the load-carrying capacity from 150 N to 450 N. These enhancements arise from the synergistic lubrication effects of CTAB-MX nanosheets and the oleogel network, including tribofilm formation, MXene interlayer sliding, and surface mending/polishing. Notably, the rGel-CTAB-MX oleogel demonstrates sensitive and reversible photothermal gel-state regulation with excellent cycling stability. This work provides a dynamically tunable MXene-based oleogel platform integrating tribological enhancement and light-responsive regulation for potential smart lubrication applications.
AB - Herein, cetyltrimethylammonium bromide (CTAB)-modified MXene nanosheets were combined with the bis-urea gelator N, N′-didodecyl-1,2-cyclohexyldiurea (DCHU) and base oils to construct MXene-based supramolecular oleogels. The oleogels, formed via hydrogen-bonding-mediated self-assembly, exhibited a gel transition temperature range of 67–75 °C and pronounced shear-thinning behavior, enabling shear-induced structural reconstruction and stable oil confinement. Compared to the 500SN base oil, the optimized rGel-CTAB-MX oleogel reduced the mean coefficient of friction (COF) by 44.22% to 0.111, decreased the wear volume by 89.91% to 12.73 × 104 μm3, and enhanced the load-carrying capacity from 150 N to 450 N. These enhancements arise from the synergistic lubrication effects of CTAB-MX nanosheets and the oleogel network, including tribofilm formation, MXene interlayer sliding, and surface mending/polishing. Notably, the rGel-CTAB-MX oleogel demonstrates sensitive and reversible photothermal gel-state regulation with excellent cycling stability. This work provides a dynamically tunable MXene-based oleogel platform integrating tribological enhancement and light-responsive regulation for potential smart lubrication applications.
KW - Nano additives
KW - Photothermal conversion
KW - Supramolecular oleogels
KW - TiCT MXene
KW - Tribological properties
UR - https://www.scopus.com/pages/publications/105044541257
U2 - 10.1016/j.triboint.2026.112479
DO - 10.1016/j.triboint.2026.112479
M3 - 文章
AN - SCOPUS:105044541257
SN - 0301-679X
VL - 226
JO - Tribology International
JF - Tribology International
M1 - 112479
ER -