来源:Coatings 发布时间:2026/9/23 15:14:25
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文献清单:先进碳基/类金刚石(DLC)涂层 | MDPI Coatings

期刊名:Coatings

期刊主页:https://www.mdpi.com/journal/coatings

Coatings期刊2025–2026上半年在类金刚石碳(DLC)和非晶碳涂层领域涌现了一批高质量论文,它们共同勾勒出该方向在沉积技术、性能调控与工程应用方面的前沿图景。 这些工作覆盖了从超高速沉积工艺(管道内壁局部高密度等离子体扫描沉积)、多元掺杂改性(Si、N、Cu掺杂对结构、附着力及耐磨性的影响),到多环境工况下的摩擦学行为(离子液体、人造血液、人工唾液、油润滑及潮湿环境)的完整链条。研究者们还系统对比了不同磁控溅射技术的沉积特性,探索了DLC涂层在3D打印生物医学组件中的潜力,并关注了PVD与PECVD技术的环境影响,体现出面向绿色摩擦学和可持续制造的学术视野。

1. Ultrahigh-Speed Deposition of Diamond-like Carbon on a Pipe Surface Using a Scanning Deposition Method via Local High-Density Plasma

利用局部高密度等离子体扫描沉积法在管道表面超高速沉积类金刚石碳膜

https://www.mdpi.com/2079-6412/15/11/1348

Ito, A.; Esaki, M.; Bae, S.M.; Nagai, T.; Kousaka, H.; Harigai, T. Ultrahigh-Speed Deposition of Diamond-like Carbon on a Pipe Surface Using a Scanning Deposition Method via Local High-Density Plasma. Coatings 2025, 15, 1348.

2. Influence of Si Content on the Microstructure and Properties of Hydrogenated Amorphous Carbon Films Deposited by Magnetron Sputtering Technique

硅含量对磁控溅射法沉积氢化非晶碳薄膜微观结构与性能的影响

https://www.mdpi.com/2079-6412/15/7/793

Yu, Z.; Shang, J.L.; Wang, Q.Y.; Zheng, H.X.; Mei, H.J.; Zhao, DC.; Liu, X.G.; Ding, J.C.; Zheng, J. Influence of Si Content on the Microstructure and Properties of Hydrogenated Amorphous Carbon Films Deposited by Magnetron Sputtering Technique. Coatings 2025, 15, 793.

3. Influence of Nitrogen and Hydrogen Addition on Composition, Morphology, Adhesion, and Wear Resistance of Amorphous Carbon Coatings Produced by RFCVD Method on Surface-Hardened Ultra-Fine Grained Bainitic 30HGSNA Steel 氮气和氢气添加对表面硬化超细晶贝氏体30HGSNA钢上经RFCVD法制备的非晶碳涂层成分、形貌、结合力及耐磨性的影响

https://www.mdpi.com/2079-6412/15/8/877

Wunsch, K.; Borowski, T.; Skolek, E.; Roguska, A.; Chodun, R.; Urbanczyk, M.; Kulikowski, K.; Spychalski, M.; Wieczorek, A.; Sobiecki, J.R. Influence of Nitrogen and Hydrogen Addition on Composition, Morphology, Adhesion, and Wear Resistance of Amorphous Carbon Coatings Produced by RFCVD Method on Surface-Hardened Ultra-Fine Grained Bainitic 30HGSNA Steel. Coatings 2025, 15, 877.

4. Properties of Diamond-like Coatings in Tribological Systems Lubricated with Ionic Liquid

离子液体润滑摩擦体系中类金刚石涂层的性能研究

https://www.mdpi.com/2079-6412/15/7/799

Radon-Kobus, K.; Madej, M. Properties of Diamond-like Coatings in Tribological Systems Lubricated with Ionic Liquid. Coatings 2025, 15, 799.

5. The Amorphous Carbon Layers Deposited by Various Magnetron Sputtering Techniques

不同磁控溅射技术沉积非晶碳层的对比研究

https://www.mdpi.com/2079-6412/15/12/1367

Chodun, R.; Skowronski, L.; Trzcinski, M.; Zaloga, D.; Nowakowska-Langier, K.; Domanowski, P.; Zdunek, K. The Amorphous Carbon Layers Deposited by Various Magnetron Sputtering Techniques. Coatings 2025, 15, 1367.

6. Toughness Characterization Methods for Diamond-like Carbon Films

类金刚石碳薄膜韧性表征方法研究进展

https://www.mdpi.com/2079-6412/15/11/1302

Liu, J.H.; Yang, Z.F.; Yu, X. Toughness Characterization Methods for Diamond-like Carbon Films. Coatings 2025, 15, 1302.

7. Biocompatibility of Al2O3-Doped Diamond-like Carbon Laparoscope Coatings 氧化铝掺杂类金刚石碳腹腔镜涂层的生物相容性

https://www.mdpi.com/2079-6412/15/4/437

Leonard, R.L.; Bull, A.B.; Xue, F.; Haycook, C.P.; Gray, S.K.; Bond, C.W.; Bond, P.E.; Brown, L.R.; Giorgio, T.D.; Johnson, J.A. Biocompatibility of Al2O3-Doped Diamond-like Carbon Laparoscope Coatings. Coatings 2025, 15, 437.

8. Environmental Impact of Physical Vapour Deposition and Plasma-Enhanced Chemical Vapour Deposition Technologies for Deposition of Diamond-like Carbon Coatings for Green Tribology

面向绿色摩擦学的类金刚石碳涂层沉积:物理气相沉积与等离子体增强化学气相沉积技术对环境的影响

https://www.mdpi.com/2079-6412/15/2/218

Ihara, L.; Wu, G.Z.; Cavaleiro, A.; Morina, A.; Yang, L.Q. Environmental Impact of Physical Vapour Deposition and Plasma-Enhanced Chemical Vapour Deposition Technologies for Deposition of Diamond-like Carbon Coatings for Green Tribology. Coatings 2025, 15, 218.

9. Properties of Chromium Nitride and Diamond-like Coatings in Tribological Systems Lubricated with Artificial Blood

人造血液润滑摩擦体系中氮化铬和类金刚石涂层的性能研究

https://www.mdpi.com/2079-6412/15/12/1496

Radon-Kobus, K.; Madej, M. Properties of Chromium Nitride and Diamond-like Coatings in Tribological Systems Lubricated with Artificial Blood. Coatings 2025, 15, 1496.

10. The Role of Nitrogen Doping in Enhancing the Thermal Stability and Wear Resistance of AlSi Coatings at Elevated Temperatures

氮掺杂在提高高温下AlSi涂层热稳定性和耐磨性中的作用

https://www.mdpi.com/2079-6412/15/11/1296

Zeng, Q.F. The Role of Nitrogen Doping in Enhancing the Thermal Stability and Wear Resistance of AlSi Coatings at Elevated Temperatures. Coatings 2025, 15, 1296.

11. Antibacterial and Film Characteristics of Copper-Doped Diamond-like Carbon Films via Sputtering Using a Mixed Target of Copper and Graphite

利用铜石墨混合靶材溅射制备铜掺杂类金刚石碳薄膜的抗菌及薄膜特性

https://www.mdpi.com/2079-6412/15/5/559

Kanasugi, K.; Nakajima, T.; Hirakuri, K. Antibacterial and Film Characteristics of Copper-Doped Diamond-like Carbon Films via Sputtering Using a Mixed Target of Copper and Graphite. Coatings 2025, 15, 559.

12. Wear and Corrosion Behavior of Diamond-like Carbon Coatings in Artificial Saliva

人工唾液中类金刚石碳涂层的磨损与腐蚀行为

https://www.mdpi.com/2079-6412/15/3/305

Madej, M.; Piotrowska, K.; Vicen, M.; Zatkaliková, V. Wear and Corrosion Behavior of Diamond-like Carbon Coatings in Artificial Saliva. Coatings 2025, 15, 305.

13. Effects of Laser Bionic Textures and Diamond-like Carbon Coatings on Tribological Properties of CuAl10Fe5Ni5 Under Oil Lubrication

油润滑条件下激光仿生织构与类金刚石碳涂层对CuAl10Fe5Ni5合金摩擦学性能的影响

https://www.mdpi.com/2079-6412/15/4/446

Wang, M.J.; Zhu, M.B.; Meng, X.K.; Peng, X.D. Effects of Laser Bionic Textures and Diamond-like Carbon Coatings on Tribological Properties of CuAl10Fe5Ni5 Under Oil Lubrication. Coatings 2025, 15, 446.

14. Low-Frictional Properties of Si-DLC Coatings Sliding Against Aluminum Alloy Under Humid Conditions

潮湿环境下Si-DLC涂层对配副铝合金的低摩擦性能研究 https://www.mdpi.com/2079-6412/16/5/510

Bae, S.M.; Lyu, S.; Liu, Y.Z.; Unno, M.; Kousaka, H.; Choi, J. Low-Frictional Properties of Si-DLC Coatings Sliding Against Aluminum Alloy Under Humid Conditions. Coatings 2026, 16, 510.

15. Diamond-Like Carbons for 3-D-Printed Biomedical Components

用于3D打印生物医学组件的类金刚石碳材料

https://www.mdpi.com/2079-6412/16/5/536

Endrino, J.L. Diamond-Like Carbons for 3-D-Printed Biomedical Components. Coatings 2026, 16, 536.

期刊介绍

主编:Dr. Emerson Coy and Prof. Dr. Wei Pan

期刊专注于发表涂层、表面、界面及薄-厚膜领域的研究成果。目前,期刊已被Scopus、ProQuest、SCIE (Web of Science)、Ei Compendex等数据库收录。

2025 Impact Factor:3.4

2025 CiteScore:6.1

Time to First Decision:12.3 Days

Acceptance to Publication:2.8 Days

 
 
 
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