Nano adhesion and Friction of $DDPO_{4}$ and $ODPO_{4}$ SAM coatings

DDPO$_{4}$$ODPO_{4}$ SAM 코팅의 나노 응착 및 마찰 특성 연구

  • Yoon, Eui-Sung (Tribology Research Center, Korea Institute of Science and Technology) ;
  • Yang, Seung-Ho (Tribology Research Center, Korea Institute of Science and Technology) ;
  • Kong, Ho-Sung (Tribology Research Center, Korea Institute of Science and Technology) ;
  • Grigoriev, Andrei Ya (Tribology Laboratory, Metal Polymer Research Institute)
  • 윤의성 (한국과학기술연구원 트라이볼로지연구센터) ;
  • 양승호 (한국과학기술연구원 트라이볼로지연구센터) ;
  • 공호성 (한국과학기술연구원 트라이볼로지연구센터) ;
  • Published : 2002.05.16

Abstract

Nano adhesion between SPM (scanning probe microscope) tips and $DDPO_{4}$ (dodecylphosphoric acid ester) and $ODPO_{4}$ (octadecylphosphoric acid ester) SAM (self-assembled monolayer) was experimentally studied. Tests were performed to measure the nano adhesion and friction in both AFM(atomic force microscope) and LFM(lateral force microscope) modes with the applied normal load. $DDPO_{4}$ and $ODPO_{4}$ SAM were formed on TiMe and TiOx surfaces. TiMe and TiOx were coated on the Si wafer by ion sputtering. Adhesion and friction of $DDPO_{4}$ and $ODPO_{4}$ SAM surfaces were compared with those of OTS (octadecyltrichlorosilane) SAM and DLC surfaces. $DDPO_{4}$ and $ODPO_{4}$ SAM converted the TiMe and TiOx surfaces to be hydrophobic. When the surface was hydrophobic, the adhesion and friction forces were found lower than those of bare surfaces. Work of adhesion was also discussed to explain how the surface was converted into hydrophobic. Results also showed that tribological characteristics of $DDPO_{4}$ and $ODPO_{4}$ had good properties in the adhesion, friction, wetting angle and work of adhesion. $DDPO_{4}$ and $ODPO_{4}$ SAM could be one of the candidates for the bio-MEMS elements.

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