Yüzey modifikasyonlarının değerlendirilmesinde kullanılan bazı yöntemler

Tekstil malzemelerinin yüzeyinde meydana gelen modifıkasyonlann belirlenmesi amacıyla temas açısı ölçümü, SEM, AFM, FTIR, XPS (ESCA) gibi bazı enstrümantal yöntemler kullanılmaktadır. Bu yöntemler sayesinde yüzey ve meydana gelen modifikasyonlar hakkında ayrıntılı bir şekilde bilgi edinilmektedir.

Some methods used in the evaluation of surface modifications

Some instrumental methods like; SEM, AFM, FTIR, XPS (ESCA) can be used for defining the surface modifications of textile materials. By these methods, some informations about surface and the nature of modifications can be obtained.

___

  • 1) www.fys.uio.no
  • 2) http://baervan.nmt.edu/Petrophysics/group/intro-to-wettability.pdf
  • 3) http://www.glossary.oilfield.slb.com/Display.cfm?Term=wettability
  • 4) www.kruss.info/techniques/contact_angle_e.html
  • 5) http://block.chem.rpi.edu/html/G_Instrument/index.html
  • 6) Höcker H., Plasma treatment of textile fibers, Pure Appl. Chem., Vol. 74, No. 3, pp. 423-427, 2002.
  • 7) Chaivan P., N., Boonyawan D., Suanpoot P., Vilaithong T., Low-temperature plasma treatment for hydrophobicity improvement of silk.Surface & Coatings Technology 193 (2005) 356- 360
  • 8) http://www.hdm-stuttgart.de/projekte/printing-inks/b_selec0.htm
  • 9) http://www.istanbul.edu.tr/eng/metalurji/sem.htm
  • 10) http://en.wikipedia.org/wiki/Scanning_electron_microscope
  • 11) http://www.semitech.ee.ttu.edu/html/facility.html
  • 12) http://www.steve.gb.com/science/electron_microscopy.html
  • 13) http://www.microscopix.co.uk/main.htm
  • 14) Dai X.J., Kviz L., Study of Atmospheric and Low Pressure Plasma Modification on the Surface Properties of Synthetic and Natural Fibres "An Odyssey in Fibres and Space" Textile Institute 81st World Conference Melbourne, Australia, April 2001
  • 15) http://www3.physik.uni-greifswald.de/method/afm/eafm.htm
  • 16) http://www.molec.com/whatjs_afm.html
  • 17) http://spm.phy.bris.ac.uk/techniques/AFM/
  • 18) Poletti G., Orsini F., RAffale- Addamo A., Riccardi C., Selli E., Cold Plasma Treatment of PET Fabrics: AFM Surface Morphology Characterisation, Applied Surface Science 219 (2003) 311-316.
  • 19) http://www.olympus.co.jp/en/insg/probe/en/explnafmE.html
  • 20) http://www.chembio.uoguelph.ca/educmat/chm729/afm/details.htm
  • 21) Wei Q.F, Wang X.Q., AFM Characterisation of Technical Fibres, JOURNAL OF INDUSTRIAL TEXTILES, Vol. 34, No. 1—July 2004
  • 22) http://www.kimyaevi.org/dokgoster.asp?dosya=560100015
  • 23) http://en.wikipedia.org/wiki/IR_spectroscopy
  • 24) http://www.sintef.no/content/page1 452O.aspx
  • 25) Chen Y., Lin H., Ren Y., Study on Bombyx mori silk treated by oxygen plasma, WANG H., ZHU L, J Zhejiang Univ SCI 2004 5(8):918 918-922
  • 26) Surface analysis method in materials science, edited by O'connor D. J., Sexton B. A., Smart R. St. C, Springer-Veriag, Heidelberg, (1992).
  • 27) http://www.nuance.northwestern.edu/Keckll/xps2.asp
  • 28) http://www.casaxps.com/
  • 29) http://www-ipcms.u-strasbg.fr/gsi/techniques/xps-esca/xps-fr.htm
  • 30) http://www-group.slac.stanford.edu/sms/xrayspectroscopy.html
  • 31) Molina R., Jovanc P., Joçic D., Bertran E., Erra P., Surface characterization of keratin fibres treated by water vapour plasma, Surf. Interface Anal. 2003; 35:128-135