Environmental effects on superlubricity of hydrogenated diamond-like carbon: Understanding tribochemical kinetics in O2 and H2O environments

被引:10
|
作者
Jang, Seokhoon
Chen, Zhe
Kim, Seong H. [1 ]
机构
[1] Penn State Univ, Dept Chem Engn, University Pk, PA 16802 USA
基金
美国国家科学基金会;
关键词
Hydrogenated diamond-like carbon; Superlubricity; Run-in behavior; Tribochemical kinetics; Re-oxidation probability; Removal probability; RUN-IN BEHAVIOR; AMORPHOUS-CARBON; TRIBOLOGICAL PROPERTIES; BOUNDARY LUBRICATION; MOLECULAR-STRUCTURE; WEAR BEHAVIOR; FRICTION; SURFACE; FILMS; ADSORPTION;
D O I
10.1016/j.apsusc.2021.152299
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Hydrogenated diamond-like carbon (H-DLC) exhibits superlubricity in inert conditions, making it ideal for protective coating in machines, but its superlubricity is often lost in humid air. Knowing reaction mechanisms of such oxidation processes would be a prerequisite to incorporate environment tolerance into the H-DLC chemistry for superlubricious performance in ambient air. But mechanistic understanding has been hampered by air-oxidation of the tribo-tested H-DLC surface during the sample transfer for ex-situ analyses. As an alternative approach, this study derived a Langmuir-type kinetics model to analyze tribochemical processes occurring at the H-DLC surface in oxidative environments. The model unveiled very distinct environmental effects of O-2 and H2O on tribochemistry of H-DLC. The O-2-oxidized H-DLC surface retains low friction after the run-in period (mu approximate to 0.057) but is susceptible to frictional wear (wear rate approximate to 32 mu m(3)/(N.mm)). In contrast, the H2O-oxidized surface is susceptible to the adsorption of water which acts like boundary lubricant layers protecting the surface from wear (similar to 3.4 mu m(3)/(N.mm)) but with relatively high friction after the run-in period (mu approximate to 0.22). The oxidation probability of H-DLC by O-2 or H2O (similar to 10(-4) Torr(-1) s(-1)) is found to be comparable to the reaction probability of hydrocarbons on catalytically-active metals (similar to 10(-3) Torr(-1) s(-1)).
引用
收藏
页数:10
相关论文
共 50 条
  • [21] OXIDATION OF IRON BY O2, H2O, AND AN O2-H2O MIXTURE
    TURNER, NH
    COLTON, RJ
    MURDAY, JS
    JOURNAL OF VACUUM SCIENCE & TECHNOLOGY, 1981, 18 (02): : 593 - 594
  • [22] INTERACTION OF H2O AND O2 WITH INTERMETALLIC ALLOYS
    Jinlin Wang and Yip Wah Chung Department of Materials Science and Engineering Northwestern University
    Transactions of Nonferrous Metals Society of China, 1999, (S1) : 100 - 105
  • [23] New complex turns H2O into O2
    不详
    CHEMICAL & ENGINEERING NEWS, 2004, 82 (24) : 31 - 31
  • [24] H2O2 photoproduction inside H2O and H2O:O2 ices at 20–140 K
    Mikhail Yu. Kulikov
    Alexander M. Feigin
    Otto Schrems
    Scientific Reports, 9
  • [25] O2 Reduction to H2O by the multicopper oxidases
    Solomon, Edward I.
    Augustine, Anthony J.
    Yoon, Jungjoo
    DALTON TRANSACTIONS, 2008, (30) : 3921 - 3932
  • [26] Effects of O2, CO2 and H2O on the Adsorption of NO on Cerium Oxide
    Yoshikawa, Kohei
    Aoyagi, Takuya
    Onodera, Taigo
    Takahashi, Eri
    Naito, Takashi
    Miyake, Tatsuya
    Kondo, Junko Nomura
    JOURNAL OF THE JAPAN PETROLEUM INSTITUTE, 2020, 63 (03) : 158 - 162
  • [27] Effects of preadsorbed hydrogen on the adsorption of O2, CO and H2O on beryllium
    Zalkind, S
    Polak, M
    Shamir, N
    SURFACE SCIENCE, 2003, 539 (1-3) : 81 - 90
  • [28] The effects of H2O and O2 on the photocurrent spectra of MEH-PPV
    Chawdhury, N
    Köhler, A
    Harrison, MG
    Hwang, DH
    Holmes, AB
    Friend, RH
    SYNTHETIC METALS, 1999, 102 (1-3) : 871 - 872
  • [29] Effects of H2O and O2 on the photocurrent spectra of MEH-PPV
    Chawdhury, N.
    Kohler, A.
    Harrison, M.G.
    Hwang, D.H.
    Holmes, A.B.
    Friend, R.H.
    Synthetic Metals, 1999, 102 (1 -3 pt 2): : 871 - 872
  • [30] Corrosion Behaviors of Ni–Cr Alloys in O2, H2O and H2O + O2 Gases at 700°C and the Effect of Temperature
    Jiarui Chen
    Chengyang Jiang
    Jianqiang Zhang
    High Temperature Corrosion of Materials, 2023, 100 : 775 - 789