中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Macro-Superlubricity Induced by Tribocatalysis of High-Entropy Ceramics

文献类型:期刊论文

作者Du, Changhe1,2,3; Yu, Tongtong2,3; Sui, Xudong2,4; Zhang, Zhengfeng2; Cai, Rongsheng2; Zhang, Liqiang2; Feng, Yange1,2,3; Feng, Min1,2; Zhou, Feng2,3; Wang, Daoai1,2,3
刊名Advanced Materials
出版日期2024-11-28
期号1页码:2413781
关键词high-entropy ceramic nanocrystals superlubricity tribocatalysis wear rate
DOIhttps://doi.org/10.1002/adma.202413781
英文摘要

Macroscale superlubricity has attracted considerable attention as a promising strategy to minimize frictional energy dissipation and achieve near-zero wear. However, realizing macroscale superlubricity with prolonged durability remains an immense challenge, particularly on engineering steels. Current superlubricants render steel surfaces susceptible to corrosion, causing severe wear and superlubrication failure. Herein, high-entropy ceramics (HEC) with catalytic properties are innovatively introduced to prevent corrosion of engineering steels and achieve macro-superlubricity through tribo-catalytic effect. Furthermore, this catalytically induced superlubricity system exhibits an ultra-low friction coefficient of 0.0037 under contact pressure up to 1.47 GPa, an ultra-long cycle lifetime of 1.25 × 106 cycles (corresponding sliding distance up to 5 km), and an extremely low wear rate of 3.032 × 10−10 mm3·N−1·m−1 on the HEC surface. Based on the experimental analysis and theoretical simulation, the in situ formed HEC nanocrystals reduce the Gibbs free energy of hydrolysis of PA molecules into inositol and phosphoric acid molecules in the lubricant. Notably, the hydrolysis products favorably contributed to the reduction of shear force in the lubrication system, which is essential for achieving macroscale superlubricity over a long time. This study provides a new perspective for designing robust superlubricity systems by harnessing the tribocatalytic effect of high-entropy materials.

源URL[http://ir.licp.cn/handle/362003/30920]  
专题兰州化学物理研究所_固体润滑国家重点实验室
通讯作者Wang, Daoai
作者单位1.山东省烟台先进材料与绿色实验室
2.中国科学院 兰州化学物理研究所 固体润滑国家重点实验室
3.中国科学院大学 材料科学与光电工程研究中心
4.维也纳工业大学 工程设计与产品开发研究所 摩擦学研究部
推荐引用方式
GB/T 7714
Du, Changhe,Yu, Tongtong,Sui, Xudong,et al. Macro-Superlubricity Induced by Tribocatalysis of High-Entropy Ceramics[J]. Advanced Materials,2024(1):2413781.
APA Du, Changhe.,Yu, Tongtong.,Sui, Xudong.,Zhang, Zhengfeng.,Cai, Rongsheng.,...&Wang, Daoai.(2024).Macro-Superlubricity Induced by Tribocatalysis of High-Entropy Ceramics.Advanced Materials(1),2413781.
MLA Du, Changhe,et al."Macro-Superlubricity Induced by Tribocatalysis of High-Entropy Ceramics".Advanced Materials .1(2024):2413781.

入库方式: OAI收割

来源:兰州化学物理研究所

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