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一步法绿色合成可分散于油中的碳化聚合物点,作为环保型润滑剂添加剂,具有优异的分散性、润滑性和耐久性。

One-step green synthesis of oil-dispersible carbonized polymer dots as eco-friendly lubricant additives with superior dispersibility, lubricity, and durability.

机构信息

Institute for Advanced Study, Chengdu University, Chengdu 610106, PR China.

School of Mechanical Engineering, Chengdu University, Chengdu 610106, PR China.

出版信息

J Colloid Interface Sci. 2022 Oct;623:762-774. doi: 10.1016/j.jcis.2022.05.095. Epub 2022 May 19.

DOI:10.1016/j.jcis.2022.05.095
PMID:35636286
Abstract

Chemical functionalization provides effective protocols for inorganic nanomaterials as oil-dispersible lubricant additives. Nevertheless, harsh reaction conditions and arduous post-processing are frequently encountered when adopting this approach. Herein, four types of carbonized polymer dots (CPDs) with admirable dispersibility and long-term stability (more than 6 months without any sediments) in polyethylene glycol (PEG200) were synthesized by a one-step and green solvothermal route using saccharides as the single precursors. The tribological behaviors of CPDs as the lubricant additives of PEG200 were systematically evaluated and compared, confirming that the anti-wear and friction-reducing performances of PEG200 can be effectively enhanced after blended with CPDs. Clarified by the friction evaluations and worn surface detections, the superior lubricity and durability of CPDs-c are mainly attributed to the synergy between the interfacial adsorption of polymeric shells, the nano-lubrication effects of carbon cores, and the establishment of CPDs-inserted tribofilm with a uniform thickness of about 86 nm. This work explores a green and facile strategy for synthesizing the CPDs toward oil lubrication and reveals the lubrication mechanism of CPDs, which facilitates the practical application of CPDs in tribology.

摘要

化学功能化提供了有效的方案,使无机纳米材料作为可分散于油中的润滑剂添加剂。然而,采用这种方法时,通常会遇到苛刻的反应条件和艰巨的后处理。在此,通过一步绿色溶剂热法,以糖作为单一前体制备了四种具有优异分散性和长期稳定性(在聚乙二醇(PEG200)中超过 6 个月没有任何沉淀物)的碳化聚合物点(CPD)。系统地评估和比较了 CPD 作为 PEG200 润滑剂添加剂的摩擦学性能,证实 CPDS 可以有效地增强 PEG200 的抗磨和减摩性能。通过摩擦评估和磨损表面检测可知,CPD-C 的优异润滑性和耐久性主要归因于聚合物壳的界面吸附、碳核的纳米润滑作用以及厚度约为 86nm 的 CPDs 插入型摩擦膜的建立。这项工作探索了一种绿色简便的合成 CPD 用于油润滑的方法,并揭示了 CPD 的润滑机制,这有助于 CPD 在摩擦学中的实际应用。

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