MM
M. Mousavi
info
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2 records found
1
Journal article
(2026)
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J. P.B. van Dam, S. T. Abrahami, M. Mousavi, Y. Gonzalez-Garcia, H. Terryn, J. M.C. Mol
Highlights
• Controlled pretreatments link steel oxide chemistry to epoxy adhesion.
• Adhesion strength scales with surface hydroxyl density.
• Hydroxyl-rich surfaces show superior adhesion retention in saline environments.
• Probe molecule links microscopic amine bonding to macroscopic adhesion strength.
• Covalent coupling across silane–steel interface linked to superior adhesion strength. ...
• Controlled pretreatments link steel oxide chemistry to epoxy adhesion.
• Adhesion strength scales with surface hydroxyl density.
• Hydroxyl-rich surfaces show superior adhesion retention in saline environments.
• Probe molecule links microscopic amine bonding to macroscopic adhesion strength.
• Covalent coupling across silane–steel interface linked to superior adhesion strength. ...
Highlights
• Controlled pretreatments link steel oxide chemistry to epoxy adhesion.
• Adhesion strength scales with surface hydroxyl density.
• Hydroxyl-rich surfaces show superior adhesion retention in saline environments.
• Probe molecule links microscopic amine bonding to macroscopic adhesion strength.
• Covalent coupling across silane–steel interface linked to superior adhesion strength.
• Controlled pretreatments link steel oxide chemistry to epoxy adhesion.
• Adhesion strength scales with surface hydroxyl density.
• Hydroxyl-rich surfaces show superior adhesion retention in saline environments.
• Probe molecule links microscopic amine bonding to macroscopic adhesion strength.
• Covalent coupling across silane–steel interface linked to superior adhesion strength.