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Biomimetic Synthesis of Copper/Polydopamine-Functionalized Oxygenated Carbon Nitride Composites and Their Application as Lubricants

机译:铜/多胺官能化的氧化碳氮化碳复合材料及其用作润滑剂的仿生合成

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摘要

The wet chemical reduction method was used to modify polydopamine (PDA) functionalized oxygenated carbon nitride (O-g-C3N4) nanosheets to prepare in situ growth of Cu nano-particles (Cu NPs) decorated on nanosheets. The PDA attached to the surface of O-g-C3N4 provided a uniformly distributed platform for copper nanoparticles. It also provided rich functional groups and provided good conditions for the dispersion of Cu/PDA/O-g-C3N4 in pure oil. Through TEM testing, Cu NPs with a diameter of 5-10 nm were evenly distributed on the PDA/O-g-C3N4 nanosheets. Through the sliding test on the steel surface, it was obvious that adding 0.2 wt% Cu/PDA/O-g-C3N4 to pure oil had a lowest coefficient of friction. In addition, the wear marks on the surface of Cu/PDA/O-g-C3N4 steel discs were studied with an optical microscope and a three-dimensional profiler and its wear resistance was better than Cu NPs, O-g-C3N4 and Cu/O-g-C3N4.
机译:湿化学还原方法用于修改多多巴胺(PDA)功能化氧化碳(O-G-C3N4)纳米片,以制备在纳米片上装饰的Cu纳米粒子(CU NPS)的原位生长。 连接到O-G-C3N4表面的PDA为铜纳米颗粒提供了一个均匀分布的平台。 它还提供了丰富的官能团,并为Cu/PDA/O-G-C3N4在纯油中的分散提供了良好的条件。 通过TEM测试,直径为5-10 nm的CU NP均匀分布在PDA/O-G-C3N4纳米片上。 通过钢表面的滑动测试,很明显,在纯油中添加0.2 wt%Cu/pda/o-g-C3N4具有最低的摩擦系数。 此外,使用光学显微镜和三维探测器研究了CU/PDA/O-G-C3N4钢盘表面上的磨损痕迹,其耐磨性优于Cu NPS O-G-C3N4和CU/O-G-C3N4 。

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