Grafting Poly(IonicLiquid)s on Covalent Organic Frameworksvia Surface-Initiated Ring-Opening Metathesis Polymerization for EnhancingLubrication Performance
Yaojie Yan (17973514), Xiaozhi Zhang (6341114), Yi Wang (32470), Shenghua Xue (17636044), Shujuan Liu (210357), Qian Ye (610320), Feng Zhou (76988), Weimin Liu (50340)
Northwestern Polytechnical University Lanzhou Institute of Chemical Physics
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Recently, a variety of functionalization methods have emerged to enhance the application efficiency of covalent organic frameworks (COFs) across diverse fields. Herein, poly(ionic liquid)-functionalized COF-LZU1 was successfully synthesized via a mechanochemical reaction followed by surface-initiated ring-opening metathesis polymerization (SI-ROMP). At first, a ROMP initiator (5-norbornene-2-methylamine) was grafted onto the aldehyde-terminated COF-LZU1 via Schiff base reaction induced by mechanical force input through ball milling; subsequently, the ionic liquid monomer (NM-MIm-PF<sub>6</sub>) can grow onto the surfaces of COFs from the active sites of the initiator through SI-ROMP, resulting in the formation of a poly(ionic liquid)-functionalized COF (PNM-MIm-PF<sub>6</sub>@LZU1). The as-prepared PNM-MIm-PF<sub>6</sub>@LZU1 exhibited outstanding tribological performance when served as an oil-based lubricant additive. Compared to base oil 500SN, the average friction coefficient of the lubricant with PNM-MIm-PF<sub>6</sub>@LZU1 decreased from 0.162 to 0.105, accompanied by a 74.3% reduction in wear volume. The excellent lubricating performance is mainly attributed to the formation of a continuous and tough friction protective film through tribochemical reaction on the friction interface.
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材料 / 化学Polymer composites and self-healing
Covalent Organic Framework Applications · Carbon dioxide utilization in catalysis