2021
DOI: 10.1016/j.triboint.2021.107194
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Role of chemical vs. physical interfacial interaction and adsorbed water on the tribology of ultrathin 2D-material/steel interfaces

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Cited by 8 publications
(5 citation statements)
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“…MoS 2 was observed to retain its low friction and adhesion behavior only at low humidity and in a narrower range (RH 5%-20%), which is dominated by water absorption instead of intercalation. More recently, the humidity-dependent tribological behavior of MoS 2 on a custom-fabricated 440C-steel counter-surface has been investigated [299]. The presence of oxides on the 440C-steel counter-surface is found to create stronger chemical bonding with MoS 2 , leading to higher friction.…”
Section: Humidity Effectmentioning
confidence: 99%
“…MoS 2 was observed to retain its low friction and adhesion behavior only at low humidity and in a narrower range (RH 5%-20%), which is dominated by water absorption instead of intercalation. More recently, the humidity-dependent tribological behavior of MoS 2 on a custom-fabricated 440C-steel counter-surface has been investigated [299]. The presence of oxides on the 440C-steel counter-surface is found to create stronger chemical bonding with MoS 2 , leading to higher friction.…”
Section: Humidity Effectmentioning
confidence: 99%
“…Yadav et al [188] combined AFM and density functional theory (DFT) to identify the interfacial interaction and established a correlation between tribological behavior, interfacial charge distribution, and variations in the potential energy profile with sliding along the metal/2D-materials interfaces. Arif et al [189] believed that while water increases the friction and adhesion at the steel/ultra-thin graphite interface, an opposite trend is observed for the steel/molybdenum disulfide interface. Water acts as a temporary protective film to inhibit chemical reactions.…”
Section: Transition Metal Dichalcogenides (Tmds)mentioning
confidence: 99%
“…Long-term working stability or durability is always a concern of textile-based sensors when working in a harsh condition [142][143][144] because they are constantly subjected to mechanical deformation, including stretching, bending, twisting, pressing, scratching, and so on, which may cause damage and malfunction. As discussed above, a compact fabric structure design would be helpful to protect the textile materials from destructions.…”
Section: Stability or Durabilitymentioning
confidence: 99%