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Erschienen in: Colloid and Polymer Science 2/2022

07.01.2022 | Original Contribution

Wettability modification of polystyrene surface by cold atmospheric pressure plasma jet

verfasst von: M. Bakhshzadmahmoudi, S. Jamali, E. Ahmadi

Erschienen in: Colloid and Polymer Science | Ausgabe 2/2022

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Abstract

In this work, we have studied the modification process of polystyrene surface by cold atmospheric pressure plasma jet to achieve a hydrophilic surface. For this purpose, dielectric barrier discharge plasma jet with different powers in short times with radio frequency power supply and argon plasma irradiation in atmospheric pressure were used. It was found that polystyrene surface changed from hydrophobic into hydrophilic after 20-s plasma irradiation and the wettability of surface increased with time. Surface evaluation was done by measuring the water contact angle of the samples before and after the modification. Fourier transform infrared spectroscopy showed the proof for the induction of oxygen-based functional groups in polystyrene when treated with the argon plasma. Plasma parameters were examined using optical emission spectroscopy, voltage-current (VI), and temperature measurements. The relation between plasma parameters and surface modification of the polymer is also discussed.

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Literatur
1.
Zurück zum Zitat Lieberman MA, Lichtenberg AJ (1994) Principles of plasma discharges and materials processing. Wiley, New York Lieberman MA, Lichtenberg AJ (1994) Principles of plasma discharges and materials processing. Wiley, New York
2.
Zurück zum Zitat Smith RW, Wei D, Apelian D (1989) Thermal plasma materials processing applications and opportunities. Plasma Chem Plasma Process 9(1):135S-165SCrossRef Smith RW, Wei D, Apelian D (1989) Thermal plasma materials processing applications and opportunities. Plasma Chem Plasma Process 9(1):135S-165SCrossRef
3.
Zurück zum Zitat Jeong JY et al (1998) Etching materials with an atmospheric-pressure plasma jet. Plasma Sources Sci Technol 7(3):282CrossRef Jeong JY et al (1998) Etching materials with an atmospheric-pressure plasma jet. Plasma Sources Sci Technol 7(3):282CrossRef
4.
Zurück zum Zitat Yoshihisa K et al (2013) Hydrophilic modification of plastic surface by using microwave plasma irradiation. IHI Engineering Review 46(1):29–33 Yoshihisa K et al (2013) Hydrophilic modification of plastic surface by using microwave plasma irradiation. IHI Engineering Review 46(1):29–33
5.
Zurück zum Zitat Pawlat J, Samon R, Henryka D, Diatczyk J, Gizewski T (2013) RF-powered atmospheric pressure plasma jet for surface treatment. Eur Phys J Appl Phys 61:24322CrossRef Pawlat J, Samon R, Henryka D, Diatczyk J, Gizewski T (2013) RF-powered atmospheric pressure plasma jet for surface treatment. Eur Phys J Appl Phys 61:24322CrossRef
6.
Zurück zum Zitat Misra NN, Schluter OK, Cullen PJ (2016) Cold plasma in food and agriculture fundumentals and applications. Academic Press Misra NN, Schluter OK, Cullen PJ (2016) Cold plasma in food and agriculture fundumentals and applications. Academic Press
7.
Zurück zum Zitat Sasai Y, Matsuzaki N, Kondo S, Yamauchi Y, Kuzuya M (2009) “Surface modification of polystyrene dishes using plasma techniques to enhance cell adhesion and proliferation”, iscp conference paper Sasai Y, Matsuzaki N, Kondo S, Yamauchi Y, Kuzuya M (2009) “Surface modification of polystyrene dishes using plasma techniques to enhance cell adhesion and proliferation”, iscp conference paper
8.
Zurück zum Zitat Conrads H, Schmidt M (2000) Plasma generation and plasma sources. Plasma Sources Sci Technol 9(4):441CrossRef Conrads H, Schmidt M (2000) Plasma generation and plasma sources. Plasma Sources Sci Technol 9(4):441CrossRef
9.
Zurück zum Zitat Liu DW, Lu X (2014) Low temperature plasma technology, CRC Press Liu DW, Lu X (2014) Low temperature plasma technology, CRC Press
10.
Zurück zum Zitat Idage SB, Badrinarayanan S (1998) Surface modification of polystyrene using nitrogen plasma. An X-ray photoelectron spectroscopy study. Langmuir 14:2780–2785 Idage SB, Badrinarayanan S (1998) Surface modification of polystyrene using nitrogen plasma. An X-ray photoelectron spectroscopy study. Langmuir 14:2780–2785
11.
Zurück zum Zitat Luan P, Knoll AJ, Bruggeman PJ, Oehrlein GS (2017) Plasma–surface interaction at atmospheric pressure: a case study of polystyrene etching and surface modification by Ar/O2 plasma jet. J Vac Sci Technol A 35(5) Luan P, Knoll AJ, Bruggeman PJ, Oehrlein GS (2017) Plasma–surface interaction at atmospheric pressure: a case study of polystyrene etching and surface modification by Ar/O2 plasma jet. J Vac Sci Technol A 35(5)
13.
Zurück zum Zitat Novi AF, Santjojo DH, Masruroh DJ (2017) The effect of substrate temperature on surface modification of polystyrene by using nitrogen plasma. Mater Sci Eng 202:012036 Novi AF, Santjojo DH, Masruroh DJ (2017) The effect of substrate temperature on surface modification of polystyrene by using nitrogen plasma. Mater Sci Eng 202:012036
14.
Zurück zum Zitat Olumuyiwa T, Olabanji M, Bradley JW (2012) Side-on surface modification of polystyrene with an atmospheric pressure microplasma jet. Plasma Process Polym 9(9):1 Olumuyiwa T, Olabanji M, Bradley JW (2012) Side-on surface modification of polystyrene with an atmospheric pressure microplasma jet. Plasma Process Polym 9(9):1
15.
Zurück zum Zitat Pawlat J, Kwiatkowski M, Terebun P, Murakami T (2015) RF-powered atmospheric-pressure plasma jet in surface treatment of high-impact polystyrene. IEEE Trans Plasma Sci 93:3813 Pawlat J, Kwiatkowski M, Terebun P, Murakami T (2015) RF-powered atmospheric-pressure plasma jet in surface treatment of high-impact polystyrene. IEEE Trans Plasma Sci 93:3813
16.
Zurück zum Zitat Owens DK, Wendt RCJ (1969) Estimation of the surface free energy of polymers. Appl Polym Sci 13:1741CrossRef Owens DK, Wendt RCJ (1969) Estimation of the surface free energy of polymers. Appl Polym Sci 13:1741CrossRef
17.
Zurück zum Zitat Smirnov AV, Atkin VS, Gorbachev IA, Grebennikov AI, Sinev IV, Simakov VV (2017) Surface modification of polystyrene thin films by RF plasma treatment. BioNanoSci 7(7):1–6 Smirnov AV, Atkin VS, Gorbachev IA, Grebennikov AI, Sinev IV, Simakov VV (2017) Surface modification of polystyrene thin films by RF plasma treatment. BioNanoSci 7(7):1–6
18.
Zurück zum Zitat Vese A, Prim G (2020) Investigation of surface modification of polystyrene by a direct and remote atmospheric-pressure plasma jet treatment. Materials 13:2435 Vese A, Prim G (2020) Investigation of surface modification of polystyrene by a direct and remote atmospheric-pressure plasma jet treatment. Materials 13:2435
19.
Zurück zum Zitat Fridman A et al (2009) Plasma chemistry, Cambridge University Press, Cambridge Fridman A et al (2009) Plasma chemistry, Cambridge University Press, Cambridge
20.
Zurück zum Zitat Wolter M, Stahl M, Kersten H (2009) Spatially resolved thermal probe measurement for the investigation of the energy influx in an rf-plasma. Vacuum 83:768–772CrossRef Wolter M, Stahl M, Kersten H (2009) Spatially resolved thermal probe measurement for the investigation of the energy influx in an rf-plasma. Vacuum 83:768–772CrossRef
21.
Zurück zum Zitat Faravelli T, Pinciroli M, Pisano F, Bozzano G, Dente M, Ranzi E (2001) Thermal degradation of polystyrene. J Anal Appl Pyrol 60:103–121CrossRef Faravelli T, Pinciroli M, Pisano F, Bozzano G, Dente M, Ranzi E (2001) Thermal degradation of polystyrene. J Anal Appl Pyrol 60:103–121CrossRef
22.
Zurück zum Zitat Kersten H, Deutsch H, Steffen H, Kroesen GM, Hippler R (2001) The energy balance at substrate surfaces during plasma processing. Vacuum 63:385–431CrossRef Kersten H, Deutsch H, Steffen H, Kroesen GM, Hippler R (2001) The energy balance at substrate surfaces during plasma processing. Vacuum 63:385–431CrossRef
23.
Zurück zum Zitat Lai J, Sunderland B, Xue J, Yan S, Zhao W, Folkard M, Michael B D, Wang Y (2006) Study on hydrophilicity of polymer surfaces improved by plasma treatment. Appl Surf Sci 252(10):3375–3379 Lai J, Sunderland B, Xue J, Yan S, Zhao W, Folkard M, Michael B D, Wang Y (2006) Study on hydrophilicity of polymer surfaces improved by plasma treatment. Appl Surf Sci 252(10):3375–3379
24.
Zurück zum Zitat Wanga L, Yan L, Zhao P, Torimoto Y, Sadakata M, Li Q (2008) Surface modification of polystyrene with atomic oxygen radical anions-dissolved solution. Appl Surf Sci 254(13):4191–4200 Wanga L, Yan L, Zhao P, Torimoto Y, Sadakata M, Li Q (2008) Surface modification of polystyrene with atomic oxygen radical anions-dissolved solution. Appl Surf Sci 254(13):4191–4200
25.
Zurück zum Zitat Vandencasteele N, Reniers F (2010) Plasma-modified polymer surfaces: characterization using XPS. J Electron Spectrosc Relat Phenom 178–179:394–408CrossRef Vandencasteele N, Reniers F (2010) Plasma-modified polymer surfaces: characterization using XPS. J Electron Spectrosc Relat Phenom 178–179:394–408CrossRef
26.
Zurück zum Zitat Kaminska A, Kaczmarek H, Kowalonek J (2002) Surface modification of Lexan treated by RF plasma. Eur Polym J 38:1915CrossRef Kaminska A, Kaczmarek H, Kowalonek J (2002) Surface modification of Lexan treated by RF plasma. Eur Polym J 38:1915CrossRef
27.
Zurück zum Zitat Inagaki N (1996) Plasma surface modification and plasma polymerization. CRC Press, 9780429156854 Inagaki N (1996) Plasma surface modification and plasma polymerization. CRC Press, 9780429156854
28.
Zurück zum Zitat Pawłat J, Kwiatkowski M, Terebun P, Murakami T (2015) RF-powered atmospheric-pressure plasma jet in surface treatment of high-impact polystyrene. IEEE Trans Plasma Sci Pawłat J, Kwiatkowski M, Terebun P, Murakami T (2015) RF-powered atmospheric-pressure plasma jet in surface treatment of high-impact polystyrene. IEEE Trans Plasma Sci
29.
Zurück zum Zitat Pavia DL, Lampman GM, Kriz GS, Vyvyan JA (2015) Introduction to spectroscopy, 5th edition Pavia DL, Lampman GM, Kriz GS, Vyvyan JA (2015) Introduction to spectroscopy, 5th edition
30.
Zurück zum Zitat Pawlat J et al (2016) RF-powered atmospheric-pressure plasma jet in surface treatment of high-impact polystyrene. IEEE Trans Plasma Sci 44(3):314–320CrossRef Pawlat J et al (2016) RF-powered atmospheric-pressure plasma jet in surface treatment of high-impact polystyrene. IEEE Trans Plasma Sci 44(3):314–320CrossRef
31.
Zurück zum Zitat Rory W, Sparavigna AC (2010) Role of plasma surface treatments on wetting and adhesion. Engineering 2(06):397CrossRef Rory W, Sparavigna AC (2010) Role of plasma surface treatments on wetting and adhesion. Engineering 2(06):397CrossRef
Metadaten
Titel
Wettability modification of polystyrene surface by cold atmospheric pressure plasma jet
verfasst von
M. Bakhshzadmahmoudi
S. Jamali
E. Ahmadi
Publikationsdatum
07.01.2022
Verlag
Springer Berlin Heidelberg
Erschienen in
Colloid and Polymer Science / Ausgabe 2/2022
Print ISSN: 0303-402X
Elektronische ISSN: 1435-1536
DOI
https://doi.org/10.1007/s00396-021-04928-0

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