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Research Article | Open Access | Just Accepted

Dealloying-induced surface porosity for enhancing tribological properties of Ag-DLC films under starved lubrication

Junjie Lu1, Shiqi Lu1, Xubing Wei1( ), Meng Cheng1, Haiyan Feng1, Chengyuan Liu3, Aiping Lin3, Kwang-Ryeol Lee4, Guangan Zhang2( ), Xiaowei Li1( )

1 School of Materials Science and Physics, China University of Mining and Technology, Xuzhou 221116, China

2 State Key Laboratory of Solid Lubrication, Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences, Lanzhou 730000, China

3 Xiangyu Baoyuan (Xuzhou) Intelligent Manufacturing Co., Ltd. Xuzhou, 221112, China

4 Computational Science Center, Korea Institute of Science and Technology, Seoul 136-791, Republic of Korea

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Abstract

Surface porous architectures serving as micro-oil reservoirs offer a promising adaptive self-lubrication strategy for critical engine components under starved lubrication conditions, especially during frequent start-stop cycles. However, the controlled fabrication of such structures on DLC surfaces and their tribological behavior under representative oil-starved conditions remain insufficiently explored. Herein, we propose a novel strategy that exploits the inherent thermodynamic incompatibility and self-migration behavior of Ag in the carbon matrix as a natural advantage. A simple dealloying method was employed to construct surface porous structure on Ag-DLC films via the selective removal of Ag particles, aiming to improve tribological properties under starved lubrication. Results reveal that the size and density of porous structure is regulated by the Ag target current during deposition. Notably, the introduced porous structure significantly mitigates abnormal wear at the friction interface while maintaining a low and stable friction coefficient under starved lubrication. The porous structure acts as micro-oil reservoirs, and it effectively replenishes the boundary lubricating film via load/thermal stimuli induced oil release. Mechanisms attribute to the synergistic effects of replenished the boundary lubricating film, reduced real contact area, and graphitized transfer films. These findings provide a foundation for designing intelligent adaptive DLC-based lubrication systems capable of autonomous oil replenishment under intermittent lubrication regimes.

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Cite this article:
Lu J, Lu S, Wei X, et al. Dealloying-induced surface porosity for enhancing tribological properties of Ag-DLC films under starved lubrication. Friction, 2026, https://doi.org/10.26599/FRICT.2026.9441318

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Received: 10 May 2026
Revised: 29 August 2026
Accepted: 15 September 2026
Available online: 16 September 2026

© The Author(s) 2026.

This is an open access article under the terms of the Creative Commons Attribution 4.0 International License (CC BY 4.0, http://creativecommons.org/licenses/by/4.0/).