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Published in: Colloid and Polymer Science 6/2015

01-06-2015 | Original Contribution

Sonochemical production and characterization of d-fructose functionalized MWCNTs/alanine-based poly(amide-imide) nanocomposites

Authors: Shadpour Mallakpour, Vajiheh Behranvand

Published in: Colloid and Polymer Science | Issue 6/2015

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Abstract

This study presents the preparation of d-fructose covalently functionalized multiwalled carbon nanotube (MWCNT-Fr) and its application in the synthesis of polymer nanocomposites (NCs). Poly(amide-imide) (PAI) as matrix of NCs was synthesized from polycondensation reaction between N-trimellitylimido-l-alanine diacid and 4,4′-diamino diphenyl methane under green conditions. Different percents of functionalized multiwalled carbon nanotube (MWCNT-Fr) were dispersed in the PAI using a solution mixing technique. Increased outer diameter and rough surface of the MWCNT-Fr showed the coating of fructose on the surface of MWCNTs. X-ray diffraction analysis was performed in order to confirm the presence of MWCNT-Fr in the PAI matrix. Surface morphology examination showed that the MWCNT-Fr was very well dispersed in the PAI matrix. The thermal properties of the blends were also evaluated. Our results demonstrated according to the limited oxygen index values that these NCs could be classified as self-extinguishing materials.

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Literature
1.
go back to reference Ibrahim M, Alaam M, El-Haes HF, Jalbout A, de Leon A (2006) Analysis of the structure and vibrational spectra of glucose and fructose. Ecl Quím São Paulo 31(3):15–21CrossRef Ibrahim M, Alaam M, El-Haes HF, Jalbout A, de Leon A (2006) Analysis of the structure and vibrational spectra of glucose and fructose. Ecl Quím São Paulo 31(3):15–21CrossRef
2.
go back to reference Beyer PL, Caviar EM, Mccallum RW (2005) Fructose intake at current levels in the united states may cause gastrointestinal distress in normal adults. J Am Diet Assoc 105:1559–1566CrossRef Beyer PL, Caviar EM, Mccallum RW (2005) Fructose intake at current levels in the united states may cause gastrointestinal distress in normal adults. J Am Diet Assoc 105:1559–1566CrossRef
3.
go back to reference Pegel S, Potschke P, Villmow T, Stoyan D, Heinrich G (2009) Spatial statistics of carbon nanotube polymer composites. Polymer 5:2123–2132CrossRef Pegel S, Potschke P, Villmow T, Stoyan D, Heinrich G (2009) Spatial statistics of carbon nanotube polymer composites. Polymer 5:2123–2132CrossRef
4.
go back to reference Hamedi MM, Hajian A, Fall AB, Kansson KH, Salajkova M, Lundell F, Wagberg L, Berglund LA (2014) Highly conducting, strong nanocomposites based on nanocellulose-assisted aqueous dispersions of single-wall carbon nanotubes. ACS Nano 8(3):2467–2476CrossRef Hamedi MM, Hajian A, Fall AB, Kansson KH, Salajkova M, Lundell F, Wagberg L, Berglund LA (2014) Highly conducting, strong nanocomposites based on nanocellulose-assisted aqueous dispersions of single-wall carbon nanotubes. ACS Nano 8(3):2467–2476CrossRef
5.
go back to reference Mallakpour S, Zadehnazari A (2013) Functionalization of multi-wall carbon nanotubes with amino acid and its influence on the properties of thiadiazol bearing poly(amide-thioester-imide) composites. Synth Met 169:1–11CrossRef Mallakpour S, Zadehnazari A (2013) Functionalization of multi-wall carbon nanotubes with amino acid and its influence on the properties of thiadiazol bearing poly(amide-thioester-imide) composites. Synth Met 169:1–11CrossRef
6.
go back to reference Li L, Li B, Hood MA, Li CY (2009) Carbon nanotube induced polymer crystallization: the formation of nanohybrid shish–kebabs. Polymer 50:953–965CrossRef Li L, Li B, Hood MA, Li CY (2009) Carbon nanotube induced polymer crystallization: the formation of nanohybrid shish–kebabs. Polymer 50:953–965CrossRef
7.
go back to reference Jin FL, Park SJ (2011) A review of the preparation and properties of carbon nanotubes-reinforced polymer composites. Carbon Lett 12(2):57–69CrossRef Jin FL, Park SJ (2011) A review of the preparation and properties of carbon nanotubes-reinforced polymer composites. Carbon Lett 12(2):57–69CrossRef
8.
go back to reference Meng L, Fu C, Lu Q (2009) Advanced technology for functionalization of carbon nanotubes. Prog Nat Sci 19:801–810CrossRef Meng L, Fu C, Lu Q (2009) Advanced technology for functionalization of carbon nanotubes. Prog Nat Sci 19:801–810CrossRef
9.
go back to reference Saifuddin N, Raziah AZ, Junizah AR (2013) Carbon nanotubes: a review on structure and their interaction with proteins. J Chem 1–18 Saifuddin N, Raziah AZ, Junizah AR (2013) Carbon nanotubes: a review on structure and their interaction with proteins. J Chem 1–18
10.
go back to reference Mallakpour S, Iderli M, Sabzalian MR (2013) In vitro studies on biodegradable chiral nanostructure poly(amide-imide)s containing different natural amino acids in green medium. Des Monom Polym 16(6):509–514CrossRef Mallakpour S, Iderli M, Sabzalian MR (2013) In vitro studies on biodegradable chiral nanostructure poly(amide-imide)s containing different natural amino acids in green medium. Des Monom Polym 16(6):509–514CrossRef
11.
go back to reference Mallakpour S, Banihassan K, Sabzalian MR (2013) Novel bioactive chiral poly(amide–imide)s containing different amino acids linkages: studies on synthesis, characterization and biodegradability. J Polym Environ 21:568–574CrossRef Mallakpour S, Banihassan K, Sabzalian MR (2013) Novel bioactive chiral poly(amide–imide)s containing different amino acids linkages: studies on synthesis, characterization and biodegradability. J Polym Environ 21:568–574CrossRef
12.
go back to reference Choudhary V, Gupta A (2011) Polymer/carbon nanotube nanocomposites, carbon nanotubes polymer nanocomposites; Dr. Siva Yellampalli (Ed.), ISBN: 978-953-307-498-6, InTech Choudhary V, Gupta A (2011) Polymer/carbon nanotube nanocomposites, carbon nanotubes polymer nanocomposites; Dr. Siva Yellampalli (Ed.), ISBN: 978-953-307-498-6, InTech
13.
go back to reference Abdalla M, Dean D, Theodore M, Fielding J, Nyairo E, Price G (2010) Magnetically processed carbon nanotube/epoxy nanocomposites: morphology, thermal, and mechanical properties. Polymer 51:1614–1620CrossRef Abdalla M, Dean D, Theodore M, Fielding J, Nyairo E, Price G (2010) Magnetically processed carbon nanotube/epoxy nanocomposites: morphology, thermal, and mechanical properties. Polymer 51:1614–1620CrossRef
14.
go back to reference Mallakpour S, Behranvand V (2014) Surface treatment of nano ZnO using 3,4,5,6-tetrabromo-N-(4-hydroxy-phenyl)-phthalamic acid as novel coupling agent for the preparation of poly(amide–imide)/ZnO nanocomposites. Colloid Polym Sci 292:2275–2283CrossRef Mallakpour S, Behranvand V (2014) Surface treatment of nano ZnO using 3,4,5,6-tetrabromo-N-(4-hydroxy-phenyl)-phthalamic acid as novel coupling agent for the preparation of poly(amide–imide)/ZnO nanocomposites. Colloid Polym Sci 292:2275–2283CrossRef
15.
go back to reference Mallakpour S, Dinari M (2011) Progress in synthetic polymers based on natural amino acids. J Macromol Sci Pure Appl Chem 48:644–679CrossRef Mallakpour S, Dinari M (2011) Progress in synthetic polymers based on natural amino acids. J Macromol Sci Pure Appl Chem 48:644–679CrossRef
16.
go back to reference Vashist SK, Zheng D, Al-Rubeaan K, Luong JHT, Sheu FS (2011) Advances in carbon nanotube based electrochemical sensors for bioanalytical applications. Biotech Adv 29:169–188CrossRef Vashist SK, Zheng D, Al-Rubeaan K, Luong JHT, Sheu FS (2011) Advances in carbon nanotube based electrochemical sensors for bioanalytical applications. Biotech Adv 29:169–188CrossRef
17.
go back to reference Chen H, Guo Z, Jia L (2012) Preparation and surface modification of highly dispersed nano-ZnO with stearic acid activated by N, N′-carbonyldiimidazole. Mat Let 82:167–170CrossRef Chen H, Guo Z, Jia L (2012) Preparation and surface modification of highly dispersed nano-ZnO with stearic acid activated by N, N′-carbonyldiimidazole. Mat Let 82:167–170CrossRef
18.
go back to reference He H, Pham-Huy LA, Dramou P, Xiao D, Zuo P, Pham-Huy C (2013) Carbon nanotubes: applications in pharmacy and medicine. BioMed Res Int 1–12, doi:10.1155/2013/578290 He H, Pham-Huy LA, Dramou P, Xiao D, Zuo P, Pham-Huy C (2013) Carbon nanotubes: applications in pharmacy and medicine. BioMed Res Int 1–12, doi:10.​1155/​2013/​578290
19.
go back to reference Hwang SH, Park YB, Yoon KH, Bang DS (2011) Smart materials and structures based on carbon nanotube composites, carbon nanotubes-synthesis, characterization, applications, Dr. Siva Yellampalli (Ed.) ISBN: 978-953-307-497-9, InTech Hwang SH, Park YB, Yoon KH, Bang DS (2011) Smart materials and structures based on carbon nanotube composites, carbon nanotubes-synthesis, characterization, applications, Dr. Siva Yellampalli (Ed.) ISBN: 978-953-307-497-9, InTech
20.
go back to reference Gao J, Li W, Shi H, Hu M, Li RKY (2014) Preparation, morphology, and mechanical properties of carbon nanotube anchored polymer nanofiber. Compos Sci Technol 92:95–102CrossRef Gao J, Li W, Shi H, Hu M, Li RKY (2014) Preparation, morphology, and mechanical properties of carbon nanotube anchored polymer nanofiber. Compos Sci Technol 92:95–102CrossRef
21.
go back to reference Vardharajula S, Ali SKZ, Tiwari PM, Eroglu E, Vig K, Dennis VA, Singh SR (2012) Functionalized carbon nanotubes: biomedical applications. Int J Nanomedicine 7:5361–5374 Vardharajula S, Ali SKZ, Tiwari PM, Eroglu E, Vig K, Dennis VA, Singh SR (2012) Functionalized carbon nanotubes: biomedical applications. Int J Nanomedicine 7:5361–5374
22.
go back to reference Zhao YL, Hu L, Stoddart JF, Gruner G (2008) Pyrenecyclodextrin-decorated single-walled carbon nanotube field-effect transistors as chemical sensors. Adv Mater 20:1910–1915CrossRef Zhao YL, Hu L, Stoddart JF, Gruner G (2008) Pyrenecyclodextrin-decorated single-walled carbon nanotube field-effect transistors as chemical sensors. Adv Mater 20:1910–1915CrossRef
23.
go back to reference Mallakpour S, Zadehnazari A (2014) The effect of carboxylated multi-walled carbon nanotubes on reinforcement efficiency of thiazole-bearing poly(amide-imide) composites. Des Monom Polym 17(3):275–285CrossRef Mallakpour S, Zadehnazari A (2014) The effect of carboxylated multi-walled carbon nanotubes on reinforcement efficiency of thiazole-bearing poly(amide-imide) composites. Des Monom Polym 17(3):275–285CrossRef
24.
go back to reference Mitróová Z, Tomašovičová N, Lancz G, Kováč J, Vávra I, Kopčanský P (2010) Preparation and characterization of carbon nanotubes functionalized by magnetite nanoparticles. Olomouc, Czech Republic, EU, 10:12–14 Mitróová Z, Tomašovičová N, Lancz G, Kováč J, Vávra I, Kopčanský P (2010) Preparation and characterization of carbon nanotubes functionalized by magnetite nanoparticles. Olomouc, Czech Republic, EU, 10:12–14
25.
26.
go back to reference Belin T, Epron F (2005) Characterization methods of carbon nanotubes: a review. Mat Sci Eng B 119:105–118CrossRef Belin T, Epron F (2005) Characterization methods of carbon nanotubes: a review. Mat Sci Eng B 119:105–118CrossRef
27.
go back to reference Pramanik S, Barua N, Buragohain AK, Hazarika J, Kumar A (2013) Biofunctionalized multiwalled carbon nanotube: a reactive component for the in situ polymerization of hyperbranched poly(ester amide) and its biophysico interfacial properties. J Phys Chem C 117:25097–25107CrossRef Pramanik S, Barua N, Buragohain AK, Hazarika J, Kumar A (2013) Biofunctionalized multiwalled carbon nanotube: a reactive component for the in situ polymerization of hyperbranched poly(ester amide) and its biophysico interfacial properties. J Phys Chem C 117:25097–25107CrossRef
28.
go back to reference Jha A, Banerjee D, Chattopadhyay KK (2011) Improved field emission from amorphous carbon nanotubes by surface functionalization with stearic acid. Carbon 49:1272–1278CrossRef Jha A, Banerjee D, Chattopadhyay KK (2011) Improved field emission from amorphous carbon nanotubes by surface functionalization with stearic acid. Carbon 49:1272–1278CrossRef
29.
go back to reference Subbiah R, Veerapandian M, Sadhasivam S, Yun K (2011) Triad CNT-NPs/polymer nanocomposites: fabrication, characterization, and preliminary antimicrobial study. Synth React Inorg Met-Org Chem 41:345–355CrossRef Subbiah R, Veerapandian M, Sadhasivam S, Yun K (2011) Triad CNT-NPs/polymer nanocomposites: fabrication, characterization, and preliminary antimicrobial study. Synth React Inorg Met-Org Chem 41:345–355CrossRef
Metadata
Title
Sonochemical production and characterization of d-fructose functionalized MWCNTs/alanine-based poly(amide-imide) nanocomposites
Authors
Shadpour Mallakpour
Vajiheh Behranvand
Publication date
01-06-2015
Publisher
Springer Berlin Heidelberg
Published in
Colloid and Polymer Science / Issue 6/2015
Print ISSN: 0303-402X
Electronic ISSN: 1435-1536
DOI
https://doi.org/10.1007/s00396-015-3530-y

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