DocumentCode :
252668
Title :
First adhesion measurements of conductive ultrananocrystalline diamond MEMS sidewalls
Author :
Buja, Federico ; Kokorian, Jaap ; Sumant, Anirudha V. ; van Spengen, W. Merlijn
Author_Institution :
Micro & Nano Eng. Group, Delft Univ. of Technol., Delft, Netherlands
fYear :
2014
fDate :
13-16 April 2014
Firstpage :
77
Lastpage :
80
Abstract :
We present the first measuremenst of adhesion between two micro-electromechanical systems (MEMS) surfaces, fully fabricated with boron doped ultrananocrystalline diamond (B-UNCD). This research allows us to explore the potential of conductive UNCD MEMS for the solution of issues like adhesion and friction in micro-devices and describe with accuracy the effects involved. By means of standard lithographic techniques, we have fabricated a diamond micro thermal actuator (chevron type), which is used as a platform for tribological testing. A peculiar effect has been observed in the adhesion phenomenon of UNCD. It involves with high probability, an interaction between hydrocarbon/amorphous carbon layers (a-C) that cover the two diamond contacting surfaces. The as-etched device shows a `chewing-gum´ effect in the adhesion curve, probably due to the formation of hydrocarbon/a-C chains after the interaction of the surfaces. This effect disappears when the device is treated in oxygen plasma and the hydrocarbon/a-C is removed. The study of this phenomenon will be followed by more accurate analysis and atomistic simulation and the results will be compared with nitrogen-incorporated UNCD (N-UNCD) fabricated devices.
Keywords :
boron; diamond; lithography; microactuators; nanostructured materials; boron doped ultrananocrystalline diamond; conductive ultrananocrystalline diamond MEMS sidewalls; diamond contacting surfaces; diamond micro thermal actuator; first adhesion measurements; lithographic techniques; microelectromechanical systems surfaces; oxygen plasma; tribological testing; Actuators; Adhesives; Diamonds; Force; Hydrocarbons; Micromechanical devices; Surface treatment; Adhesion; MEMS; boron; crystalline; diamond; nitrogen; sidewall; ultranano;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Nano/Micro Engineered and Molecular Systems (NEMS), 2014 9th IEEE International Conference on
Conference_Location :
Waikiki Beach, HI
Type :
conf
DOI :
10.1109/NEMS.2014.6908763
Filename :
6908763
Link To Document :
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