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Erschienen in: Journal of Materials Science 13/2014

01.07.2014

Effects of multi-walled carbon nanotube (MWCNT) dispersion and compatibilizer on the electrical and rheological properties of polycarbonate/poly(acrylonitrile–butadiene–styrene)/MWCNT composites

verfasst von: In-Soo Han, Yun Kyun Lee, Heon Sang Lee, Ho Gyu Yoon, Woo Nyon Kim

Erschienen in: Journal of Materials Science | Ausgabe 13/2014

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Abstract

In this study, the effects of multi-walled carbon nanotube (MWCNT) dispersion and poly(styrene-co-acrylonitrile)-g-maleic anhydride (SAN-g-MAH) as a compatibilizer on the electrical conductivity, electromagnetic interference shielding effectiveness (EMI SE), and rheological properties of polycarbonate (PC)/poly(acrylonitrile–butadiene–styrene) (ABS)/MWCNT composites were investigated. The morphological results from the scanning and transmission electron microscope images showed that the droplet size of the ABS decreased when the SAN-g-MAH (5 phr) was added to the PC/ABS (80/20) blend. This result suggests that the SAN-g-MAH acts as an effective compatibilizer in the PC/ABS blend. Also, the MWCNT appeared to be located more in the ABS phase (dispersed phase) than in the PC phase (continuous phase). The interfacial tension of the ABS/MWCNT composite was lower than that of the PC–MWCNT composite, and the lower value of interfacial tension of the ABS/MWCNT composite affected the preferred location of the MWCNT in the ABS phase more than in the PC phase. The electrical conductivities and EMI SE of the PC/ABS/MWCNT composite with the compatibilizer were higher than those of the composite without compatibilizer. The complex viscosity of the PC/ABS/MWCNT composite containing the SAN-g-MAH increased with the frequency compared to that of the composite without SAN-g-MAH. This result is possibly due to the increased degree of MWCNT dispersion. The result of rheological properties is consistent with the results of the morphology, electrical conductivity, and EMI SE of the PC/ABS/MWCNT composite.

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Literatur
1.
Zurück zum Zitat Suarez H, Barlow JW, Paul DR (1984) Mechanical properties of ABS/polycarbonate blends. J Appl Polym Sci 29:3253CrossRef Suarez H, Barlow JW, Paul DR (1984) Mechanical properties of ABS/polycarbonate blends. J Appl Polym Sci 29:3253CrossRef
2.
Zurück zum Zitat Kim WN, Burns CM (1988) Thermal behavior, morphology, and some melt properties of blends of polycarbonate with poly(styrene-co-acrylonitrile) and poly(acrylonitrile–butadiene–styrene). Polym Eng Sci 28:1115CrossRef Kim WN, Burns CM (1988) Thermal behavior, morphology, and some melt properties of blends of polycarbonate with poly(styrene-co-acrylonitrile) and poly(acrylonitrile–butadiene–styrene). Polym Eng Sci 28:1115CrossRef
3.
Zurück zum Zitat Chun JH, Maeng KS, Suh KS (1991) Miscibility and synergistic effect of impact strength in polycarbonate/ABS blends. J Mater Sci 26:5347CrossRef Chun JH, Maeng KS, Suh KS (1991) Miscibility and synergistic effect of impact strength in polycarbonate/ABS blends. J Mater Sci 26:5347CrossRef
4.
Zurück zum Zitat Tjong SC, Meng YZ (2000) Effect of reactive compatibilizers on the mechanical properties of polycarbonate/poly(acrylonitrile–butadiene–styrene) blends. Eur Polym J 36:123CrossRef Tjong SC, Meng YZ (2000) Effect of reactive compatibilizers on the mechanical properties of polycarbonate/poly(acrylonitrile–butadiene–styrene) blends. Eur Polym J 36:123CrossRef
5.
Zurück zum Zitat Han MS, Lee YK, Lee HS, Yun YH, Kim WN (2009) Electrical, morphological and rheological properties of carbon nanotube composites with polyethylene and poly(phenylene sulfide) by melt mixing. Chem Eng Sci 64:4649CrossRef Han MS, Lee YK, Lee HS, Yun YH, Kim WN (2009) Electrical, morphological and rheological properties of carbon nanotube composites with polyethylene and poly(phenylene sulfide) by melt mixing. Chem Eng Sci 64:4649CrossRef
6.
7.
Zurück zum Zitat Rahaman M, Chaki TK, Khastgir D (2011) Development of high performance EMI shielding material from EVA, NBR, and their blends: effect of carbon black structure. J Mater Sci 46:3989. doi:10.1007/s10853-011-5326-x CrossRef Rahaman M, Chaki TK, Khastgir D (2011) Development of high performance EMI shielding material from EVA, NBR, and their blends: effect of carbon black structure. J Mater Sci 46:3989. doi:10.​1007/​s10853-011-5326-x CrossRef
8.
Zurück zum Zitat Sachdev VK, Patel K, Bhattacharya S, Tandon RP (2011) Electromagnetic interference shielding of graphite/acrylonitrile butadiene styrene composites. J Appl Polym Sci 120:1100CrossRef Sachdev VK, Patel K, Bhattacharya S, Tandon RP (2011) Electromagnetic interference shielding of graphite/acrylonitrile butadiene styrene composites. J Appl Polym Sci 120:1100CrossRef
9.
10.
Zurück zum Zitat Huang CY, Wu CC (2000) The EMI shielding effectiveness of PC/ABS/nickel-coated-carbon-fibre composites. Eur Polym J 36:2729CrossRef Huang CY, Wu CC (2000) The EMI shielding effectiveness of PC/ABS/nickel-coated-carbon-fibre composites. Eur Polym J 36:2729CrossRef
11.
Zurück zum Zitat Im JS, Kim JG, Lee YS (2009) Fluorination effects of carbon black additives for electrical properties and EMI shielding efficiency by improved dispersion and adhesion. Carbon 47:2640CrossRef Im JS, Kim JG, Lee YS (2009) Fluorination effects of carbon black additives for electrical properties and EMI shielding efficiency by improved dispersion and adhesion. Carbon 47:2640CrossRef
12.
Zurück zum Zitat Sung YT, Han MS, Song KH, Jung JW, Lee HS, Kum CK, Joo J, Kim WN (2006) Rheological and electrical properties of polycarbonate/multi-walled carbon nanotube composites. Polymer 47:4434CrossRef Sung YT, Han MS, Song KH, Jung JW, Lee HS, Kum CK, Joo J, Kim WN (2006) Rheological and electrical properties of polycarbonate/multi-walled carbon nanotube composites. Polymer 47:4434CrossRef
13.
Zurück zum Zitat Papanicolaou GC, Papaefthymiou KP, Koutsomitopoulou AF, Portan DV, Zaoutsos SP (2012) Effect of dispersion of MWCNTs on the static and dynamic mechanical behavior of epoxy matrix nanocomposites. J Mater Sci 47:350. doi:10.1007/s10853-011-5804-1 CrossRef Papanicolaou GC, Papaefthymiou KP, Koutsomitopoulou AF, Portan DV, Zaoutsos SP (2012) Effect of dispersion of MWCNTs on the static and dynamic mechanical behavior of epoxy matrix nanocomposites. J Mater Sci 47:350. doi:10.​1007/​s10853-011-5804-1 CrossRef
14.
Zurück zum Zitat Imran SM, Kim Y, Shao GN, Hussain M, Choa YH, Kim HT (2014) Enhancement of electroconductivity of polyaniline/grapheme oxide nanocomposites through in situ emulsion polymerization. J Mater Sci 49:1328. doi:10.1007/s10853-013-7816-5 CrossRef Imran SM, Kim Y, Shao GN, Hussain M, Choa YH, Kim HT (2014) Enhancement of electroconductivity of polyaniline/grapheme oxide nanocomposites through in situ emulsion polymerization. J Mater Sci 49:1328. doi:10.​1007/​s10853-013-7816-5 CrossRef
15.
Zurück zum Zitat Zetina-Hernandez O, Duarte-Aranda S, May-Pat A, Canche-Escamilla G, Uribe-Calderon J, Gonzalez-Chi P, Aviles F (2013) Coupled electro-mechanical properties of multiwall carbon nanotube/polypropylene composites for strain sensing applications. J Mater Sci 48:7587. doi:10.1007/s10853-013-7575-3 CrossRef Zetina-Hernandez O, Duarte-Aranda S, May-Pat A, Canche-Escamilla G, Uribe-Calderon J, Gonzalez-Chi P, Aviles F (2013) Coupled electro-mechanical properties of multiwall carbon nanotube/polypropylene composites for strain sensing applications. J Mater Sci 48:7587. doi:10.​1007/​s10853-013-7575-3 CrossRef
16.
Zurück zum Zitat Yoo TW, Lee YK, Lim SJ, Yoon HG, Kim WN (2014) Effects of hybrid fillers on the electromagnetic interference shielding effectiveness of polyamide 6/conductive filler composites. J Mater Sci 49:1701. doi:10.1007/s10853-013-7855-y CrossRef Yoo TW, Lee YK, Lim SJ, Yoon HG, Kim WN (2014) Effects of hybrid fillers on the electromagnetic interference shielding effectiveness of polyamide 6/conductive filler composites. J Mater Sci 49:1701. doi:10.​1007/​s10853-013-7855-y CrossRef
17.
Zurück zum Zitat Lee DW, Ma S, Lee KY (2013) Electrical and mechanical properties of carbon/glass hybridized long fiber reinforced polypropylene composites. Macromol Res 21:767CrossRef Lee DW, Ma S, Lee KY (2013) Electrical and mechanical properties of carbon/glass hybridized long fiber reinforced polypropylene composites. Macromol Res 21:767CrossRef
18.
Zurück zum Zitat Du F, Scogna RC, Zhou W, Brand S, Fischer JE, Winey KI (2004) Nanotube networks in polymer nanocomposites: rheology and electrical conductivity. Macromolecules 37:9048CrossRef Du F, Scogna RC, Zhou W, Brand S, Fischer JE, Winey KI (2004) Nanotube networks in polymer nanocomposites: rheology and electrical conductivity. Macromolecules 37:9048CrossRef
20.
Zurück zum Zitat Li QF, Xu Y, Yoon JS, Chen GX (2011) Dispersions of carbon nanotubes/polyhedral oligomeric silsesquioxanes hybrids in polymer: the mechanical, electrical and EMI shielding properties. J Mater Sci 46:2324. doi:10.1007/s10853-010-5077-0 CrossRef Li QF, Xu Y, Yoon JS, Chen GX (2011) Dispersions of carbon nanotubes/polyhedral oligomeric silsesquioxanes hybrids in polymer: the mechanical, electrical and EMI shielding properties. J Mater Sci 46:2324. doi:10.​1007/​s10853-010-5077-0 CrossRef
21.
Zurück zum Zitat Zheng J, Zhu Z, Qi J, Zhou Z, Li P, Peng M (2011) Preparation of isotactic polypropylene-grafted multiwalled carbon nanotubes (iPP-g-MWCNTs) by macroradical addition in solution and the properties of iPP-g-MWCNTs/iPP composites. J Mater Sci 46:648CrossRef Zheng J, Zhu Z, Qi J, Zhou Z, Li P, Peng M (2011) Preparation of isotactic polypropylene-grafted multiwalled carbon nanotubes (iPP-g-MWCNTs) by macroradical addition in solution and the properties of iPP-g-MWCNTs/iPP composites. J Mater Sci 46:648CrossRef
22.
Zurück zum Zitat Goldel A, Kasaliwal G, Potschke P (2009) Selective localization and migration of multiwalled carbon nanotubes in blends of polycarbonate and poly(styrene–acrylonitrile). Macromol Rapid Commun 30:423CrossRef Goldel A, Kasaliwal G, Potschke P (2009) Selective localization and migration of multiwalled carbon nanotubes in blends of polycarbonate and poly(styrene–acrylonitrile). Macromol Rapid Commun 30:423CrossRef
23.
Zurück zum Zitat Zou H, Wang K, Zhang Q, Fu Q (2006) A change of phase morphology in poly(p-phenylene sulfide)/polyamide 66 blends induced by adding multi-walled carbon nanotubes. Polymer 47:7821CrossRef Zou H, Wang K, Zhang Q, Fu Q (2006) A change of phase morphology in poly(p-phenylene sulfide)/polyamide 66 blends induced by adding multi-walled carbon nanotubes. Polymer 47:7821CrossRef
24.
Zurück zum Zitat Wu D, Zhang Y, Zhang M, Yu W (2009) Selective localization of multiwalled carbon nanotubes in polycaprolactone/polylactide blend. Biomacromolecules 10:417CrossRef Wu D, Zhang Y, Zhang M, Yu W (2009) Selective localization of multiwalled carbon nanotubes in polycaprolactone/polylactide blend. Biomacromolecules 10:417CrossRef
25.
Zurück zum Zitat Dai K, Xu XB, Li ZM (2007) Electrically conductive carbon black (CB) filled in situ microfibrillar poly(ethylene terephthalate) (PET)/polyethylene (PE) composite with a selective CB distribution. Polymer 48:849CrossRef Dai K, Xu XB, Li ZM (2007) Electrically conductive carbon black (CB) filled in situ microfibrillar poly(ethylene terephthalate) (PET)/polyethylene (PE) composite with a selective CB distribution. Polymer 48:849CrossRef
26.
Zurück zum Zitat Potschke P, Pegel S, Claes M, Bonduel D (2008) A novel strategy to incorporate carbon nanotubes into thermoplastic matrices. Macromol Rapid Commun 29:244CrossRef Potschke P, Pegel S, Claes M, Bonduel D (2008) A novel strategy to incorporate carbon nanotubes into thermoplastic matrices. Macromol Rapid Commun 29:244CrossRef
27.
Zurück zum Zitat Bose S, Bhattacharyya AR, Kulkarni AR, Potschke P (2009) Multiwall carbon nanotubes prepared by melt blending. Compos Sci Tech 69:365CrossRef Bose S, Bhattacharyya AR, Kulkarni AR, Potschke P (2009) Multiwall carbon nanotubes prepared by melt blending. Compos Sci Tech 69:365CrossRef
28.
Zurück zum Zitat Ko SW, Hong MK, Park BJ, Gupta RK, Choi HJ, Bhattaxharya SN (2009) Morphological and rheological characterization of multi-walled carbon nanotube/PLA/PBAT blend nanocomposites. Polym Bull 63:125CrossRef Ko SW, Hong MK, Park BJ, Gupta RK, Choi HJ, Bhattaxharya SN (2009) Morphological and rheological characterization of multi-walled carbon nanotube/PLA/PBAT blend nanocomposites. Polym Bull 63:125CrossRef
29.
Zurück zum Zitat Park DH, Kan TG, Lee YK, Kim WN (2013) Effect of multi-walled carbon nanotube dispersion on the electrical and rheological properties of poly(propylene carbonate)/poly(lactic acid)/multi-walled carbon nanotube composites. J Mater Sci 48:481. doi:10.1007/s10853-012-6762-y CrossRef Park DH, Kan TG, Lee YK, Kim WN (2013) Effect of multi-walled carbon nanotube dispersion on the electrical and rheological properties of poly(propylene carbonate)/poly(lactic acid)/multi-walled carbon nanotube composites. J Mater Sci 48:481. doi:10.​1007/​s10853-012-6762-y CrossRef
30.
Zurück zum Zitat Joo J, Lee CY (2000) High frequency electromagnetic interference shielding response of mixtures and multilayer films based on conducting polymers. J Appl Phys 88:513CrossRef Joo J, Lee CY (2000) High frequency electromagnetic interference shielding response of mixtures and multilayer films based on conducting polymers. J Appl Phys 88:513CrossRef
31.
Zurück zum Zitat Colaneri NF, Shacklette LW (1992) EMI shielding measurements of conductive polymer blends. IEEE Trans Instrum Meas 41:291CrossRef Colaneri NF, Shacklette LW (1992) EMI shielding measurements of conductive polymer blends. IEEE Trans Instrum Meas 41:291CrossRef
32.
Zurück zum Zitat Lee JB, Lee YK, Choi GD, Na SW, Park TS, Kim WN (2011) Compatibilizing effects for improving mechanical properties of biodegradable poly(lactic acid) and polycarbonate blends. Polym Degrad Stab 96:553CrossRef Lee JB, Lee YK, Choi GD, Na SW, Park TS, Kim WN (2011) Compatibilizing effects for improving mechanical properties of biodegradable poly(lactic acid) and polycarbonate blends. Polym Degrad Stab 96:553CrossRef
33.
Zurück zum Zitat Sumita M, Sakata K, Asai S, Miyasaka K, Nakagawa H (1991) Dispersion of fillers and the electrical conductivity of polymer blends filled with carbon black. Polym Bull 25:265CrossRef Sumita M, Sakata K, Asai S, Miyasaka K, Nakagawa H (1991) Dispersion of fillers and the electrical conductivity of polymer blends filled with carbon black. Polym Bull 25:265CrossRef
34.
Zurück zum Zitat Wu S (1982) Polymer interface and adhesion. Marcel Dekker, New York Wu S (1982) Polymer interface and adhesion. Marcel Dekker, New York
35.
Zurück zum Zitat Van Krevelen DW, Te Nijenhuis K (2009) Properties of polymers. Elsevier, Amsterdam Van Krevelen DW, Te Nijenhuis K (2009) Properties of polymers. Elsevier, Amsterdam
36.
Zurück zum Zitat Nuriel S, Liu L, Barber AH, Wagner HD (2005) Direct measurement of multiwall nanotube surface tension. Chem Phys Lett 404:263CrossRef Nuriel S, Liu L, Barber AH, Wagner HD (2005) Direct measurement of multiwall nanotube surface tension. Chem Phys Lett 404:263CrossRef
37.
Zurück zum Zitat White DRJ (1971) EMI/EMC handbook series 4. Don White Consultants, Warrenton White DRJ (1971) EMI/EMC handbook series 4. Don White Consultants, Warrenton
38.
Zurück zum Zitat Jafari SH, Potschke P, Stephan M, Warth H, Alberts H (2002) Multicomponent blends based on polyamide and styrenic polymers: morphology and melt rheology. Polymer 43:6985CrossRef Jafari SH, Potschke P, Stephan M, Warth H, Alberts H (2002) Multicomponent blends based on polyamide and styrenic polymers: morphology and melt rheology. Polymer 43:6985CrossRef
39.
Zurück zum Zitat Mitchell CA, Bahr JL, Arepalli S, Tour JM, Krishnamoorti R (2002) Dispersion of functionalized carbon nanotubes in polystyrene. Macromolecules 35:8825CrossRef Mitchell CA, Bahr JL, Arepalli S, Tour JM, Krishnamoorti R (2002) Dispersion of functionalized carbon nanotubes in polystyrene. Macromolecules 35:8825CrossRef
Metadaten
Titel
Effects of multi-walled carbon nanotube (MWCNT) dispersion and compatibilizer on the electrical and rheological properties of polycarbonate/poly(acrylonitrile–butadiene–styrene)/MWCNT composites
verfasst von
In-Soo Han
Yun Kyun Lee
Heon Sang Lee
Ho Gyu Yoon
Woo Nyon Kim
Publikationsdatum
01.07.2014
Verlag
Springer US
Erschienen in
Journal of Materials Science / Ausgabe 13/2014
Print ISSN: 0022-2461
Elektronische ISSN: 1573-4803
DOI
https://doi.org/10.1007/s10853-014-8152-0

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