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Controllable Superlubricity of Ricinoleic Acid/Tungsten-Doped Amorphous Carbon Coating Composite System via Water
Pengcheng Ma1,2, Liuqing Yang1,3, Longfei Wu1,3
1State Key Laboratory of Solid Lubrication, Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences, Lanzhou 730000, China.
Abstract:
Carbon-based coatings combined with ricinoleic acid exhibit exceptional lubrication and macroscale superlubricity, yet the influence of the water content remains insufficiently explored. In this paper, a tungsten-doped amorphous carbon coating/ricinoleic acid composite system was prepared, and superlubricity was achieved by controlling the water content in ricinoleic acid. When the water content is 13.89 wt %, the friction coefficient of the solid-liquid system is approximately 0.005. This phenomenon is attributed to the formation of a -(CH2-CH2)n- passivation layer during the sliding process. Based on this passivation layer, a hydrogen bond layer is formed from ricinoleic acid-water and the decomposition products of ricinoleic acid containing -OH groups. This hydrogen bond layer is strong enough to withstand normal loads, effectively preventing contact between solid surfaces.

