Published August 31, 2007 | Version v1
Journal article

Oxygen plasma functionalization of poly(p-phenilene sulphide)

  • 1. Department F4, Jozef Stefan Institute, Jamova 39, 1000 Ljubljana (Slovenia)
  • 2. National Institute of Chemistry, Hajdrihova 19, 1000 Ljubljana (Slovenia)
  • 3. Faculty of Natural Sciences and Engineering, University of Ljubljana, Askrceva 12, 1000 Ljubljana (Slovenia)
  • 4. Institute of Physics, Bijenicka 56, 10000 Zagreb (Croatia)
  • 5. Laplace, University Paul Sabatier, 118 Route de Narbonne, 31062 Toulouse (France)
  • 6. Laboratoire de Science et Genie des Surfaces, Ecole de Mines, Parc de Saurupt, 54042 Nancy (France)

Description

Surface effects during plasma activation of poly(p-phenilene sulphide)-PPS have been studied. Samples that were exposed to weakly ionized highly dissociated oxygen plasma created an inductively coupled radiofrequency discharge with the power of 100 W. The electron density and temperature were measured with a double Langmuir probe and were 4 x 1015 m-3 and 3 eV, respectively, while the neutral atom density was measured with a fiber optics catalytic probe and was 4 x 1021 m-3. The surface tension was determined by measuring the contact angle of deionized water, while the appearance of surface functional groups was detected by XPS. The surface tension of untreated PPS was 7 x 10-3 N/m or/and increased to 7 x 10-2 N/m in few seconds of plasma treatment. It remained fairly constant for longer plasma treatments. The XPS survey spectrum showed little oxygen on untreated samples, but its concentration increased to about 20 at.% in few seconds. Detailed high resolution XPS C 1s peak showed that the carbon was left fairly stable during plasma treatment. The main functional groups formed were rather sulphate in sulphite groups, as determined from high resolution S 2p peak. Namely, a strong transition from sulphide to sulphate state of sulfur was observed. The spontaneous deactivation of the polymer surface was measured as well. The deactivation was fairly logarithmic with the characteristic decay time of several hours

Additional details

Identifiers

DOI
10.1016/j.apsusc.2007.04.074;
PII
S0169-4332(07)00618-6;

Publishing Information

Journal Title
Applied Surface Science
Journal Volume
253
Journal Issue
21
Journal Page Range
p. 8669-8673
ISSN
0169-4332
CODEN
ASUSEE

Optional Information

Copyright
Copyright (c) 2007 Elsevier Science B.V., Amsterdam, The Netherlands, All rights reserved.