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Published in: Colloid and Polymer Science 1/2017

16-12-2016 | Original Contribution

Mesoporous diatomite-filled PMMA by in situ reverse atom transfer radical polymerization

Authors: Yousef Fazli, Khezrollah Khezri

Published in: Colloid and Polymer Science | Issue 1/2017

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Abstract

Mesoporous diatomite was employed to synthesize different poly (methyl methacrylate)/diatomite composites. Diatomite platelets were used for in situ polymerization of methyl methacrylate by RATRP to synthesize tailor-made poly (methyl methacrylate) nanocomposites. FTIR spectroscopy, TGA, nitrogen adsorption/desorption isotherm, SEM, and TEM were employed for evaluating some inherent properties of pristine diatomite platelets. Conversion and molecular weight determinations were carried out using GC and SEC, respectively. Addition of 3 wt% pristine mesoporous diatomite leads to increase of conversion from 84 to 95%. Molecular weight of poly (methyl methacrylate) chains increases from 8600 to 9400 g mol−1 by addition of 3 wt% pristine mesoporous diatomite; however, polydispersity index values increase from 1.34 to 1.54. Increasing thermal stability of the nanocomposites is demonstrated by TGA. Differential scanning calorimetry shows an increase in glass transition temperature from 75.8 to 81.1 °C by adding 3 wt% of mesoporous diatomite platelets.

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Literature
1.
go back to reference Brown JM, Curliss D, Vaia RA (2000) Thermoset-layered silicate nanocomposites. Quaternary ammonium montmorillonite with primary diamine cured epoxies. Chem Mater 12:3376–3384CrossRef Brown JM, Curliss D, Vaia RA (2000) Thermoset-layered silicate nanocomposites. Quaternary ammonium montmorillonite with primary diamine cured epoxies. Chem Mater 12:3376–3384CrossRef
2.
go back to reference Mirzataheri M, Mahdavian AR, Atai M (2009) Nanocomposite particles with core-shell morphology IV: an efficient approach to the encapsulation of Cloisite 30B by poly (styrene-co-butyl acrylate) and preparation of its nanocomposite latex via miniemulsion polymerization. Coll Polym Sci 287:725–732CrossRef Mirzataheri M, Mahdavian AR, Atai M (2009) Nanocomposite particles with core-shell morphology IV: an efficient approach to the encapsulation of Cloisite 30B by poly (styrene-co-butyl acrylate) and preparation of its nanocomposite latex via miniemulsion polymerization. Coll Polym Sci 287:725–732CrossRef
3.
go back to reference Fazli Y, Kulani E, Khezri K, Alijani H (2015) PMMA-grafted silica aerogel nanoparticles via in situ SR&NI ATRP: grafting through approach. Micropor Mesopor Mater 214:70–79 Fazli Y, Kulani E, Khezri K, Alijani H (2015) PMMA-grafted silica aerogel nanoparticles via in situ SR&NI ATRP: grafting through approach. Micropor Mesopor Mater 214:70–79
4.
go back to reference Khezri K, Mahdavi H (2016) Reverse atom transfer radical polymerization of styrene in the presence of functionalized silica aerogel nanoparticles. Z Phys Chem 230:1499–1518 Khezri K, Mahdavi H (2016) Reverse atom transfer radical polymerization of styrene in the presence of functionalized silica aerogel nanoparticles. Z Phys Chem 230:1499–1518
5.
go back to reference Burkett SL, Ko N, Stern ND, Caissie JA, Sengupta D (2006) Covalently linked nanocomposites: poly(methyl methacrylate) brushes grafted from zirconium phosphonate. Chem Mater 18:5137–5143CrossRef Burkett SL, Ko N, Stern ND, Caissie JA, Sengupta D (2006) Covalently linked nanocomposites: poly(methyl methacrylate) brushes grafted from zirconium phosphonate. Chem Mater 18:5137–5143CrossRef
6.
go back to reference Roghani-Mamaqani H, Khezri K (2016) Polystyrene-attached graphene nanolayers by reversible addition-fragmentation chain transfer polymerization: a grafting from epoxy groups with various densities. J Polym Res 23:190–204 Roghani-Mamaqani H, Khezri K (2016) Polystyrene-attached graphene nanolayers by reversible addition-fragmentation chain transfer polymerization: a grafting from epoxy groups with various densities. J Polym Res 23:190–204
7.
go back to reference Khezri K, Fazli Y (2016) Synthesis and characterization of poly (styrene-co-butyl acrylate)/silica aerogel nanocomposites by in situ AGET ATRP: investigating thermal properties. High Temp Mater Proc. doi:10.1515/htmp-2015-0244 Khezri K, Fazli Y (2016) Synthesis and characterization of poly (styrene-co-butyl acrylate)/silica aerogel nanocomposites by in situ AGET ATRP: investigating thermal properties. High Temp Mater Proc. doi:10.​1515/​htmp-2015-0244
8.
go back to reference Alexandre M, Dubois P (2000) Polymer-layered silicate nanocomposites: preparation, properties and uses of a new class of materials. Mater Sci Eng 28:1–63CrossRef Alexandre M, Dubois P (2000) Polymer-layered silicate nanocomposites: preparation, properties and uses of a new class of materials. Mater Sci Eng 28:1–63CrossRef
9.
go back to reference Fazli Y, Alijani H, Khezri K (2016) Styrene and methyl methacrylate random copolymerization via AGET ATRP: incorporation of hydrophobic silica aerogel nanoparticles. Adv Polym Technol 35:21549–21557 Fazli Y, Alijani H, Khezri K (2016) Styrene and methyl methacrylate random copolymerization via AGET ATRP: incorporation of hydrophobic silica aerogel nanoparticles. Adv Polym Technol 35:21549–21557
10.
go back to reference Varghese S, Karger-Kocsis J (2003) Natural rubber-based nanocomposites by latex compounding with layered silicates. Polymer 44:4921–4927CrossRef Varghese S, Karger-Kocsis J (2003) Natural rubber-based nanocomposites by latex compounding with layered silicates. Polymer 44:4921–4927CrossRef
11.
go back to reference Khezri K, Haddadi-Asl V, Roghani-Mamaqani H, Salami-Kalajahi M (2012) Synthesis of clay-dispersed poly(styrene-co-methyl methacrylate) nanocomposite via miniemulsion atom transfer radical polymerization: a reverse approach. J Appl Polym Sci 124:2278–2286CrossRef Khezri K, Haddadi-Asl V, Roghani-Mamaqani H, Salami-Kalajahi M (2012) Synthesis of clay-dispersed poly(styrene-co-methyl methacrylate) nanocomposite via miniemulsion atom transfer radical polymerization: a reverse approach. J Appl Polym Sci 124:2278–2286CrossRef
12.
go back to reference Pyun J, Matyjaszewski K (2001) Synthesis of nanocomposite organic/inorganic hybrid materials using controlled/“living” radical polymerization. Chem Mater 13:3436–3448CrossRef Pyun J, Matyjaszewski K (2001) Synthesis of nanocomposite organic/inorganic hybrid materials using controlled/“living” radical polymerization. Chem Mater 13:3436–3448CrossRef
13.
go back to reference Yu Y, Addai-Mensah J, Losic D (2012) Functionalized diatom silica microparticles for removal of mercury ions. Sci Technol Adv Mater 13:015008 (11pp)CrossRef Yu Y, Addai-Mensah J, Losic D (2012) Functionalized diatom silica microparticles for removal of mercury ions. Sci Technol Adv Mater 13:015008 (11pp)CrossRef
14.
go back to reference Ha J, Oh E, Song I (2013) The fabrication and characterization of sintered diatomite for potential microfiltration applications. Ceram Int 39:7641–7648CrossRef Ha J, Oh E, Song I (2013) The fabrication and characterization of sintered diatomite for potential microfiltration applications. Ceram Int 39:7641–7648CrossRef
15.
go back to reference Caliskan N, Kul AR, Alkan S, Sogut EG, Alacabey I (2011) Adsorption of zinc(II) on diatomite and manganese-oxide-modified diatomite: a kinetic and equilibrium study. J Hazard Mater 193:27–36CrossRef Caliskan N, Kul AR, Alkan S, Sogut EG, Alacabey I (2011) Adsorption of zinc(II) on diatomite and manganese-oxide-modified diatomite: a kinetic and equilibrium study. J Hazard Mater 193:27–36CrossRef
16.
go back to reference Gerengi H, Kocak Y, Jazdzewska A, Kurtay M, Durgun H (2013) Electrochemical investigations on the corrosion behaviour of reinforcing steel in diatomite- and zeolite-containing concrete exposed to sulphuric acid. Construc Build Mater 49:471–477CrossRef Gerengi H, Kocak Y, Jazdzewska A, Kurtay M, Durgun H (2013) Electrochemical investigations on the corrosion behaviour of reinforcing steel in diatomite- and zeolite-containing concrete exposed to sulphuric acid. Construc Build Mater 49:471–477CrossRef
17.
go back to reference Sun Z, Zheng S, Ayoko GA, Frost RL, Xi Y (2013) Degradation of simazine from aqueous solutions by diatomite-supported nanosized zero-valent iron composite materials. J Hazard Mater 263:768–777CrossRef Sun Z, Zheng S, Ayoko GA, Frost RL, Xi Y (2013) Degradation of simazine from aqueous solutions by diatomite-supported nanosized zero-valent iron composite materials. J Hazard Mater 263:768–777CrossRef
18.
go back to reference Yu Z, Wang Y, Liu X, Sun J, Sha G, Yang J, Meng C (2014) A novel pathway for the synthesis of ordered mesoporous silica from diatomite. Mater Let 119:150–153CrossRef Yu Z, Wang Y, Liu X, Sun J, Sha G, Yang J, Meng C (2014) A novel pathway for the synthesis of ordered mesoporous silica from diatomite. Mater Let 119:150–153CrossRef
19.
go back to reference Posi P, Lertnimoolchai S, Sata V, Chindaprasirt P (2013) Pressed lightweight concrete containing calcined diatomite aggregate. Construc Build Mater 47:896–901CrossRef Posi P, Lertnimoolchai S, Sata V, Chindaprasirt P (2013) Pressed lightweight concrete containing calcined diatomite aggregate. Construc Build Mater 47:896–901CrossRef
20.
go back to reference Zhang Y, Zhao Y, Chu H, Zhou X, Dong B (2014) Dewatering of Chlorella pyrenoidosa using diatomite dynamicmembrane: filtration performance, membrane fouling andcake behavior. Coll Surf B: Biointerfaces 113:458–466CrossRef Zhang Y, Zhao Y, Chu H, Zhou X, Dong B (2014) Dewatering of Chlorella pyrenoidosa using diatomite dynamicmembrane: filtration performance, membrane fouling andcake behavior. Coll Surf B: Biointerfaces 113:458–466CrossRef
21.
go back to reference Ruggiero I, Terracciano M, Martucci NM, De Stefano L, Migliaccio N, Tatè R, Rendina I, Arcari P, Lamberti A, Rea I (2014) Diatomite silica nanoparticles for drug delivery. Nanoscale Res Let 9:329–336CrossRef Ruggiero I, Terracciano M, Martucci NM, De Stefano L, Migliaccio N, Tatè R, Rendina I, Arcari P, Lamberti A, Rea I (2014) Diatomite silica nanoparticles for drug delivery. Nanoscale Res Let 9:329–336CrossRef
22.
go back to reference Nenadovic S, Nenadovic M, Kovacevic R, Matovic L, Matovic B, Jovanovic Z, Grbovic Novakovic J (2009) Influence of diatomite microstructure on its adsorption capacity for Pb(II). Sci Sintering 41:309–317CrossRef Nenadovic S, Nenadovic M, Kovacevic R, Matovic L, Matovic B, Jovanovic Z, Grbovic Novakovic J (2009) Influence of diatomite microstructure on its adsorption capacity for Pb(II). Sci Sintering 41:309–317CrossRef
23.
go back to reference Shen W, Feng L, Lei A, Liu Z, Chen Y (2014) Effects of porosity and pore size on the properties of AgO-decorated porous diatomite ceramic composites. Ceram Int 40:1495–1502CrossRef Shen W, Feng L, Lei A, Liu Z, Chen Y (2014) Effects of porosity and pore size on the properties of AgO-decorated porous diatomite ceramic composites. Ceram Int 40:1495–1502CrossRef
24.
go back to reference Zetterlund PB, Kagawa Y, Okubo M (2008) Controlled/living radical polymerization in dispersed systems. Chem Rev 108:3747–3794CrossRef Zetterlund PB, Kagawa Y, Okubo M (2008) Controlled/living radical polymerization in dispersed systems. Chem Rev 108:3747–3794CrossRef
25.
go back to reference Khezri K, Alijani H, Fazli Y (2016) Activators regenerated by electron transfer for atom transfer radical polymerization of styrene in the presence of hydrophobically modified silica aerogel nanoparticles. Z Phys Chem 230:111–129 Khezri K, Alijani H, Fazli Y (2016) Activators regenerated by electron transfer for atom transfer radical polymerization of styrene in the presence of hydrophobically modified silica aerogel nanoparticles. Z Phys Chem 230:111–129
26.
go back to reference Yi Z, Pan K, Jiang L, Zhang J, Dan Y (2007) Copper-based reverse ATRP process of styrene in mixed solvents. Europ Polym J 43:2557–2563CrossRef Yi Z, Pan K, Jiang L, Zhang J, Dan Y (2007) Copper-based reverse ATRP process of styrene in mixed solvents. Europ Polym J 43:2557–2563CrossRef
27.
go back to reference Braunecker W, Matyjaszewski K (2007) Controlled/living radical polymerization: features, developments, and perspectives. Prog Polym Sci 32:93–146CrossRef Braunecker W, Matyjaszewski K (2007) Controlled/living radical polymerization: features, developments, and perspectives. Prog Polym Sci 32:93–146CrossRef
28.
go back to reference Yu Z-Q, Ji X-L, Ni P (2006) Living radical miniemulsion polymerization by RAFT in the presence of beta-cyclodextrin. Coll Polym Sci 285:211–218CrossRef Yu Z-Q, Ji X-L, Ni P (2006) Living radical miniemulsion polymerization by RAFT in the presence of beta-cyclodextrin. Coll Polym Sci 285:211–218CrossRef
29.
go back to reference Hawker CJ, Bosman AW, Harth E (2001) New polymer synthesis by nitroxide mediated living radical polymerizations. Chem Rev 101:3661–3688CrossRef Hawker CJ, Bosman AW, Harth E (2001) New polymer synthesis by nitroxide mediated living radical polymerizations. Chem Rev 101:3661–3688CrossRef
30.
go back to reference Wang Y, Zhang Y, Hou C, He X, Liu M (2016) Preparation of a novel TETA functionalized magnetic PGMA nano-absorbent by ATRP method and used for highly effective adsorption of Hg(II). J Taiwan Inst Chem Eng 58:283–289CrossRef Wang Y, Zhang Y, Hou C, He X, Liu M (2016) Preparation of a novel TETA functionalized magnetic PGMA nano-absorbent by ATRP method and used for highly effective adsorption of Hg(II). J Taiwan Inst Chem Eng 58:283–289CrossRef
31.
go back to reference Roghani-Mamaqani H, Khezri K (2016) A grafting from approach to graft polystyrene chains at the surface ofgraphene nanolayers by RAFT –hydroxyl groups. Appl Surf Sci 360:373–382 Roghani-Mamaqani H, Khezri K (2016) A grafting from approach to graft polystyrene chains at the surface ofgraphene nanolayers by RAFT –hydroxyl groups. Appl Surf Sci 360:373–382
32.
go back to reference Khezri K, Mahdavi H (2016) Polystyrene-silica aerogel nanocomposites by in situ simultaneous reverse and normal initiation technique for ATRP. Micropo Mesopor Mater 228:132–140 Khezri K, Mahdavi H (2016) Polystyrene-silica aerogel nanocomposites by in situ simultaneous reverse and normal initiation technique for ATRP. Micropo Mesopor Mater 228:132–140
33.
go back to reference Cheng Z, Zhu X, Zhang L, Zhou N, Chen J (2003) Homogeneous solution reverse atom transfer radical polymerization of methyl methacrylate. J Macromol Sci Part A-Pure and Applied Chemistry A40:371–385CrossRef Cheng Z, Zhu X, Zhang L, Zhou N, Chen J (2003) Homogeneous solution reverse atom transfer radical polymerization of methyl methacrylate. J Macromol Sci Part A-Pure and Applied Chemistry A40:371–385CrossRef
34.
go back to reference Karaman S, Karaipekli A, Sarı A, Bicer A (2011) Polyethylene glycol (PEG)/diatomite composite as a novel form-stable phase change material for thermal energy storage. Solar Energy Mater Solar Cells 95:1647–1653CrossRef Karaman S, Karaipekli A, Sarı A, Bicer A (2011) Polyethylene glycol (PEG)/diatomite composite as a novel form-stable phase change material for thermal energy storage. Solar Energy Mater Solar Cells 95:1647–1653CrossRef
35.
go back to reference Li X, Bian C, Chen W, He J, Wang Z, Xu N, Xue G (2003) Polyaniline on surface modification of diatomite: a novel way to obtain conducting diatomite fillers. Appl Surf Sci 207:378–383CrossRef Li X, Bian C, Chen W, He J, Wang Z, Xu N, Xue G (2003) Polyaniline on surface modification of diatomite: a novel way to obtain conducting diatomite fillers. Appl Surf Sci 207:378–383CrossRef
36.
go back to reference Li X, Li X, Wang G (2005) Fibrillar polyaniline/diatomite composite synthesized by one-step in situ polymerization method. Appl Surf Sci 249:266–270CrossRef Li X, Li X, Wang G (2005) Fibrillar polyaniline/diatomite composite synthesized by one-step in situ polymerization method. Appl Surf Sci 249:266–270CrossRef
37.
go back to reference Hu S, Zhu X, Hu W, Yan L, Cai C (2013) Crystallization behaviors and foaming properties of diatomite-filled polypropylene composites. Polym Bull 70:517–533CrossRef Hu S, Zhu X, Hu W, Yan L, Cai C (2013) Crystallization behaviors and foaming properties of diatomite-filled polypropylene composites. Polym Bull 70:517–533CrossRef
38.
go back to reference Liang JZ (2008) Effects of extrusion conditions on die-swell behavior of polypropylene/diatomite composite melts. Polym Tes 27:936–940CrossRef Liang JZ (2008) Effects of extrusion conditions on die-swell behavior of polypropylene/diatomite composite melts. Polym Tes 27:936–940CrossRef
39.
go back to reference Sheng G, Dong H, Li Y (2012) Characterization of diatomite and its application for the retention of radiocobalt: role of environmental parameters. J Environ Radioact 113:108–115CrossRef Sheng G, Dong H, Li Y (2012) Characterization of diatomite and its application for the retention of radiocobalt: role of environmental parameters. J Environ Radioact 113:108–115CrossRef
40.
go back to reference Yuan P, Liu D, Tan D, Liu K, Yu H, Zhong Y, Yuan A, Yu W, He H (2013) Surface silylation of mesoporous/macroporous diatomite (diatomaceous earth) and its function in Cu(II) adsorption: the effects of heating pretreatment. Micropors Mesopor Mater 170:9–19CrossRef Yuan P, Liu D, Tan D, Liu K, Yu H, Zhong Y, Yuan A, Yu W, He H (2013) Surface silylation of mesoporous/macroporous diatomite (diatomaceous earth) and its function in Cu(II) adsorption: the effects of heating pretreatment. Micropors Mesopor Mater 170:9–19CrossRef
41.
go back to reference Garderen N, Clemens FJ, Mezzomo M, Bergmann CP, Graule T (2011) Investigation of clay content and sintering temperature on attrition resistance of highly porous diatomite based material. Appl Clay Sci 52:115–121CrossRef Garderen N, Clemens FJ, Mezzomo M, Bergmann CP, Graule T (2011) Investigation of clay content and sintering temperature on attrition resistance of highly porous diatomite based material. Appl Clay Sci 52:115–121CrossRef
42.
go back to reference Du Y, Yan J, Meng Q, Wang J, Dai H (2012) Fabrication and excellent conductive performance of antimony-doped tin oxide-coated diatomite with porous structure. Mater Chem Phys 133:907–912CrossRef Du Y, Yan J, Meng Q, Wang J, Dai H (2012) Fabrication and excellent conductive performance of antimony-doped tin oxide-coated diatomite with porous structure. Mater Chem Phys 133:907–912CrossRef
43.
go back to reference Sun Z, Yang X, Zhang G, Zheng S, Frost RL (2013) A novel method for purification of low grade diatomite powders in centrifugal fields. Int J Miner Process 125:18–26CrossRef Sun Z, Yang X, Zhang G, Zheng S, Frost RL (2013) A novel method for purification of low grade diatomite powders in centrifugal fields. Int J Miner Process 125:18–26CrossRef
44.
go back to reference Liu D, Yuan P, Tan D, Liu H, Wang T, Fan M, Zhu J, He H (2012) Facile preparation of hierarchically porous carbon using diatomite as both template and catalyst and methylene blue adsorption of carbon products. J Coll Interf Sci 388:176–184CrossRef Liu D, Yuan P, Tan D, Liu H, Wang T, Fan M, Zhu J, He H (2012) Facile preparation of hierarchically porous carbon using diatomite as both template and catalyst and methylene blue adsorption of carbon products. J Coll Interf Sci 388:176–184CrossRef
45.
go back to reference Xia J, Matyjaszewski K (1997) Controlled/“living” radical polymerization. Homogeneous reverse atom transfer radical polymerization using AIBN as the initiator. Macromolecules 30:7692–7696CrossRef Xia J, Matyjaszewski K (1997) Controlled/“living” radical polymerization. Homogeneous reverse atom transfer radical polymerization using AIBN as the initiator. Macromolecules 30:7692–7696CrossRef
46.
go back to reference Li M, Matyjaszewski K (2003) Reverse atom transfer radical polymerization in miniemulsion. Macromolecules 36:6028–6035CrossRef Li M, Matyjaszewski K (2003) Reverse atom transfer radical polymerization in miniemulsion. Macromolecules 36:6028–6035CrossRef
47.
go back to reference Roghani-Mamaqani H, Haddadi-Asl V, Najafi M, Salami-Kalajahi M (2010) Synthesis and characterization of clay dispersed polystyrene nanocomposite via atom transfer radical polymerization. Polym Compos 31:1829–1837CrossRef Roghani-Mamaqani H, Haddadi-Asl V, Najafi M, Salami-Kalajahi M (2010) Synthesis and characterization of clay dispersed polystyrene nanocomposite via atom transfer radical polymerization. Polym Compos 31:1829–1837CrossRef
48.
go back to reference -Asfadeh A, Haddadi-Asl V, Salami-Kalajahi M, Sarsabili M, Roghani-Mamaqani H (2013) Investigating the Effect of MCM-41 Nanoparticles on the Kinetics of Atom Transfer Radical Polymerization of Styrene. NANO 8:Art Number: 1350018 -Asfadeh A, Haddadi-Asl V, Salami-Kalajahi M, Sarsabili M, Roghani-Mamaqani H (2013) Investigating the Effect of MCM-41 Nanoparticles on the Kinetics of Atom Transfer Radical Polymerization of Styrene. NANO 8:Art Number: 1350018
49.
go back to reference Khezri K (2016) Polystyrene–mesoporous diatomite composites produced by in situ activators regenerated by electron transfer atom transfer radical polymerization. RSC Adv 6:109286–109296 Khezri K (2016) Polystyrene–mesoporous diatomite composites produced by in situ activators regenerated by electron transfer atom transfer radical polymerization. RSC Adv 6:109286–109296
50.
go back to reference Khezri K, Fazli Y (2016) Characterization of diatomite platelets and its application for in situ atom transfer radical random copolymerization of styrene and butyl acrylate: normal approach. J Inorg Organomet Polym. doi:10.1007/s10904-016-0469-5 Khezri K, Fazli Y (2016) Characterization of diatomite platelets and its application for in situ atom transfer radical random copolymerization of styrene and butyl acrylate: normal approach. J Inorg Organomet Polym. doi:10.​1007/​s10904-016-0469-5
51.
go back to reference Sarsabili M, Kalantari K, Khezri K (2016) SR&NI atom transfer radical random copolymerization of styrene and butyl acrylate in the presence of MPS-functionalized silica aerogel nanoparticles: Investigating thermal properties. J Therm Anal Calorim 126:1261–1272 Sarsabili M, Kalantari K, Khezri K (2016) SR&NI atom transfer radical random copolymerization of styrene and butyl acrylate in the presence of MPS-functionalized silica aerogel nanoparticles: Investigating thermal properties. J Therm Anal Calorim 126:1261–1272
52.
go back to reference Subramania S, Choia SW, Lee JY, Kim JH (2007) Aqueous dispersion of novel silylated (polyurethane-acrylic hybrid/clay) nanocomposite. Polymer 48:4691–4703CrossRef Subramania S, Choia SW, Lee JY, Kim JH (2007) Aqueous dispersion of novel silylated (polyurethane-acrylic hybrid/clay) nanocomposite. Polymer 48:4691–4703CrossRef
53.
go back to reference Ver Meer MA, Narasimhan B, Shanks BH, Mallapragada SK (2010) Effect of Mesoporosity on thermal and mechanical properties of polystyrene/silica composites. ACS Appl Mater Interf 2:41–47CrossRef Ver Meer MA, Narasimhan B, Shanks BH, Mallapragada SK (2010) Effect of Mesoporosity on thermal and mechanical properties of polystyrene/silica composites. ACS Appl Mater Interf 2:41–47CrossRef
54.
go back to reference Khezri K, Haddadi-Asl V, Roghani-Mamaqani H, Salami-Kalajahi M (2012) Polystyrene- organoclay nanocomposites produced by in situ activators regenerated by electron transfer for atom transfer radical polymerization. J Polym Eng 32:235–243 Khezri K, Haddadi-Asl V, Roghani-Mamaqani H, Salami-Kalajahi M (2012) Polystyrene- organoclay nanocomposites produced by in situ activators regenerated by electron transfer for atom transfer radical polymerization. J Polym Eng 32:235–243
Metadata
Title
Mesoporous diatomite-filled PMMA by in situ reverse atom transfer radical polymerization
Authors
Yousef Fazli
Khezrollah Khezri
Publication date
16-12-2016
Publisher
Springer Berlin Heidelberg
Published in
Colloid and Polymer Science / Issue 1/2017
Print ISSN: 0303-402X
Electronic ISSN: 1435-1536
DOI
https://doi.org/10.1007/s00396-016-3997-1

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