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Perfluoropolyether films

TyndaU, G. W. and Karis, T. E., Spreading Profiles of Molecu-larly Thin Perfluoropolyether Films, Tribol. Trans., Vol. 42, 1999, pp. 463 70. [Pg.235]

Tyndall, G. W. and Waltman, R. J., Thermodynamics of Confined Perfluoropolyether Film on Amorphous Carbon Surface Determined from the Time-Dependent Evaporation Kinetics," J. Phys. Chem. B, Vol. 104,2000, pp. 7085-7095. [Pg.236]

FIG. 11 Break-free length (distance B-C on inset) as a function of relative humidity for the clean Si(lOO) wafer (Si), the amorphous carbon film (AC), and the bonded perfluoropolyether film (Z-Dol). The inset depicts two dipping experiments on amorphous carbon, at 0% and 97% relative humidity (rH). (From Ref. 50. Copyright 1994 American Institute of Physics.)... [Pg.36]

Q. Guo, S. Izumisawa, M. S. Jhon, and Y. T. Hsia, Transport properties of nanoscale perfluoropolyether films, IEEE Trans. Magh. (in press). [Pg.70]


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Perfluoropolyether

Perfluoropolyethers

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