Nicole M G Franssen, Joost N H Reek, Bas de Bruin. Synthesis of functional polyolefins:State of the art and remaining challenges[J]. Chemical Society Reviews, 2013, 42:5809-5832.
[6]
Lü Y Y, Ma Z, Hu Y L, et al. New synthesis of amphiphilic copolymers PE-g-PEO via esterfication[J].Chinese Science Bulletin, 2003, 8:523-525.
[7]
Hyoung W L, Hee W C, Sang M L, et al. Synthesis of multi hydroxyl chain-end functionalized polyolefin elastomer with poly(t-butylstyrene) graft[J]. Elastomers and Composites, 2013, 48:10-17.
[8]
Dong J Y, Hong H, Chung T C, et al. Synthesis of linear polyolefin elastomers containing divinylbenzene units and applications in cross-linking, functionalization, and graft reactions[J]. Macromolecules, 2003, 36:6000-6009.
[9]
Matyjaszewski K. Atom transfer radical polymerization(ATRP):Current status and future perspectives[J]. Macromolecules, 2012, 45:4015-4039.
[10]
Nicolas J, Guillaneuf Y, Lefay C, et al. Nitroxide-mediated polymerization[J]. Progress in Polymer Science, 2013, 38:63-235.
Lu H L, Hong S, Chung T C. Synthesis of polypropylene-co-methylstyrene copolymers by metallocene and Ziegler-Natta catalysts[J]. Journal of Polymer Science, Part A:Polymer Chemistry, 1999, 37:2795-2802. 3.0.CO;2-L target="_blank">
[13]
Chung T C, Lu H L, Ding R D. Synthesis of polyethylene-g-polystyrene and polyethylene-g-poly(p-methylstyrene) graft copolymers[J]. Macromolecules, 1997, 30:1272-1278.
[14]
Tang T T, Huang J, Huang B, et al. Synthesis of graft polymers with poly(isoprene) as main chain by living anionic polymerization mechanism[J]. Journal of Polymer Science, Part A:Polymer Chemistry, 2012, 50:5144-5150.
[15]
Lin Y C, Zheng J, Liu F, et al. Synthesis of well-defined comb-like graft copolymers by nucleophilic substitution reaction between living polymers and polyhalohydrocarbon[J]. Journal of Polymer Science, Part A:Polymer Chemistry, 2013, 51:1664-1671.
[16]
Liu F, Wang L, Zhang G C, et al. Synthesis of well-defined long chain branched polyethylene via anionic polymerization combined with graft-onto method[J]. Chemical Research in Chinese Universities, 2013, 29:589-595.
[17]
Chung T C, Lu L, Li C L. Functionalization of polyethylene using borane reagents and metallocene catalysts[J]. Polymer International, 1995, 37:197-205.
[18]
Inoue Y, Matsugi T, Kashiwa N, et al. Graft copolymers from linear polyethylene via atom transfer radical polymerization[J]. Macromolecules, 2004, 37:3651-3658.
[19]
Hideyuki K, Junji S, Nobuo K, et al. Synthesis and characterization of polypropylene-based polymer hybrids linking poly(methyl methacrylate) and poly(2-hydroxyethyl methacrylate)[J]. Polymer, 2008, 49:4576-4584.
[20]
Mustafa C, P?nar B, Levent D A, et al. Visible light-induced grafting from polyolefins[J]. Macromolecules, 2013, 46:6395-6401.
[21]
Wang L, Yang H F, Tan H Y, et al. Synthesis and structure-property relationships of polypropylene-g-polystyrene and polypropylene-g-poly(n-butylacrylate) graft copolymers with well-defined molecular structures[J]. Polymer, 2013, 54:3641-3653.
[22]
Ryuichi S, Hideyuki K, Junji S, et al. Controlled radical polymerization with polyolefin macroinitiator:A convenient and versatile approach to polyolefin-based block and graft copolymers[J]. Polymer Bulletin, 2014, 71:1421-1431.
[23]
Shabnam M, Sohrab R, Ali A E. Synthesis of functional polyethylene graft copolymers by nitroxide-mediated living radical polymerization[J]. Polymers for Advanced Technologies, 2008, 19:1528-1535.
[24]
Smith A E, Xu X W, McCormick C L. Stimuli-responsive amphiphilic (co)polymers via RAFT polymerization[J]. Progress in Polymer Science, 2010, 35:45-93.
[25]
Murat B, Olgun G. RAFT mediated grafting of poly(acrylic acid) (PAA) from polyethylene/polypropylene (PE/PP) nonwoven fabric via preirradiation[J]. Polymer, 2013, 54:4838-4848.
Ozturk T, Hazer B. Synthesis and characterization of a novel macromonomer initiator for reversible addition fragmentation chain transfer (RAFT). evaluation of the polymerization kinetics and gelation behaviors[J]. Journal of Macromolecular Science, Part A:Pure and Applied Chemistry, 2010, 47:265-272.
[28]
Morandi G, Montembault V, Pascual S, et al. Well-defined graft copolymers issued from cyclobutenyl macromonomers by combination of ATRP and ROMP[J]. Macromolecules, 2006, 39:2732-2735.
[29]
Li Z, Zhang K, Ma J, et al. Facile syntheses of cylindrical molecular brushes by a sequential RAFT and ROMP "grafting-through" methodology[J]. Journal of Polymer Science, Part A:Polymer Chemistry, 2009, 47:5557-5563.
[30]
Xia Y, Olsen B D, Kornfield J A, et al. Efficient synthesis of narrowly dispersed brush copolymers and study of their assemblies:The importance of side chain arrangement[J]. Journal of the American Chemical Society, 2009, 131:18525-18532.
[31]
Fragouli P, Iatrou H, Hadjichristidis N, et al. Synthesis of well-defined miktoarm star polymers of poly(dimethylsiloxane) by the combination of chlorosilane and benzyl chloride linking chemistry[J]. Journal of Polymer Science, Part A:Polymer Chemistry, 2006, 44, 6587-6599.
[32]
Kaneyoshi H, Inoue Y, Matyjaszewski K. Synthesis of block and graft copolymers with linear polyethylene segments by combination of degenerative transfer coordination polymerization and atom transfer radical polymerization[J]. Macromolecules, 2005, 38:5425-5435.
[33]
Fonagy T, Schulze U, Komber H, et al. Poly(propylene-g-styrene) graft copolymers with well-defined microstructure by metallocene catalyzed copolymerization of propylene with allyl-terminated polystyrene macromonomers[J]. Macromolecules, 2007, 40:1401-1407.
Shi H C, Shi D A, Wang X Y, et al. A facile route for preparing stable co-continuous morphology of LLDPE/PA6 blends with low PA6 content[J]. Polymer, 2010, 51:4958-4968.
[37]
Ollie F, Alexander H S, Michael R W, et al. Synthesis of block copolymers via atom transfer radical polymerization and ‘click chemistry' grafted from pre-functionalized polypropylene surfaces using gamma irradiation[J]. Polymer Chemistry, 2012, 3:2102-2111.
[38]
Hua X Q, Zhang T Z, Ren J, et al. A facile approach to modify polypropylene flakes combining O2-plasmatreatment and graft polymerization of l-lactic acid[J]. Colloids and Surfaces A:Physicochemical and Engineering Aspects, 2010, 369:128-135.
Li C Y, Xu F J, Yang W T. Simple strategy to functionalize polymeric substrates via surface-initiated ATRP for biomedical applications[J]. Langmuir, 2013, 29:1541-1550.
[41]
Bhuvanesh G, Mamta K, Saiqa I. Drug release studies of N-isopropyl acrylamide/acrylic acid grafted polypropylene nonwoven fabric[J]. Journal of Applied Polymer Science, 2013, 130:1675-1681.
[42]
Feng Y, Shi Y J. Research on preparation and properties of methacrylate grafted meltblown polypropylene nonwovens for oily wastewater treatment[J]. Desalination and Water Treatment, 2013, 51:5460-5465.
[43]
Jellema E, Jongerius A L, Reek J N H, et al. C1 polymerisation and related C—C bond forming carbene insertion reactions[J]. Chemical Society Reviews, 2010, 39:1706-1723.