About the phase transitions in aqueous solutions of thermoresponsive copolymers and hydrogels based on 2-(2-methoxyethoxy)ethyl methacrylate and oligo(ethylene glycol) methacrylate

被引:436
作者
Lutz, Jean-Francois [1 ]
Weichenhan, Katja [1 ]
Akdemir, Oezgur [1 ]
Hoth, Ann [1 ]
机构
[1] Fraunhofer Inst Appl Polymer Res, Res Grp Nanotechnol Life Sci, D-14476 Potsdam, Germany
关键词
D O I
10.1021/ma062925q
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
The phase transitions in water of well-defined copolymers of 2-(2-methoxyethoxy)ethyl methacrylate (MEO(2)MA) and oligo(ethylene glycol) methacrylate (OEGMA, M-n = 475 g mol(-1)) were studied by means of H-1 NMR, dynamic light scattering (DLS) and turbidimetry. These copolymers were synthesized by atom transfer radical polymerization (ATRP) in order to obtain macromolecules with a homogeneous chain-to-chain comonomer composition and therefore with a narrow phase transition. As previously reported, copolymers containing 10 mol % of OEGMA per chain (M-n = 20 100 g mol(-1 ;) M-w/M-n = 1.35) exhibited a sharp LCST in water around 40 degrees C, whereas copolymers having 20 mol % of OEGMA per chain (M-n = 19 500 g mol(-1); M-w/M-n = 1.32) precipitated slightly above 50 degrees C. DLS indicated that these phase transitions are most likely due to a reversible coil-to-globule transition. Moreover covalently cross-linked networks of MEO(2)MA and OEGMA were synthesized by ATRP in the presence of the cross-linker ethylene glycol dimethacrylate. These hydrogels were thermoresponsive and exhibited LCST values comparable to those measured for their single-chains analogues (e.g., hydrogels containing 20 mol % of OEGMA within the network underwent phase transitions at approximately 51-53 degrees C).
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页码:2503 / 2508
页数:6
相关论文
共 55 条
[1]   Stimuli responsive polymers for biomedical applications [J].
Alarcón, CDH ;
Pennadam, S ;
Alexander, C .
CHEMICAL SOCIETY REVIEWS, 2005, 34 (03) :276-285
[2]   Well-defined amphiphilic thermosensitive copolymers based on poly(ethylene glycol monomethacrylate) and methyl methacrylate prepared by atom transfer radical polymerization [J].
Ali, MM ;
Stöver, HDH .
MACROMOLECULES, 2004, 37 (14) :5219-5227
[3]   Switching the inside and the outside of aggregates of water-soluble block copolymers with double thermoresponsivity [J].
Arotçaréna, M ;
Heise, B ;
Ishaya, S ;
Laschewsky, A .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2002, 124 (14) :3787-3793
[4]   Mesoglobules of thermoresponsive polymers in dilute aqueous solutions above the LCST [J].
Aseyev, V ;
Hietala, S ;
Laukkanen, A ;
Nuopponen, M ;
Confortini, O ;
Du Prez, FE ;
Tenhu, H .
POLYMER, 2005, 46 (18) :7118-7131
[5]   Conformational properties of short poly(oxyethylene) chains in water studied by IR spectroscopy [J].
Begum, R ;
Matsuura, H .
JOURNAL OF THE CHEMICAL SOCIETY-FARADAY TRANSACTIONS, 1997, 93 (21) :3839-3848
[6]   LLS and FTIR studies on the hysteresis in association and dissociation of poly(N-isopropylacrylamide) chains in water [J].
Cheng, H ;
Shen, L ;
Wu, C .
MACROMOLECULES, 2006, 39 (06) :2325-2329
[7]   Thermoresponsive surface-grafted poly(N-isopropylacrylamide) copolymers:: Effect of phase transitions on protein and bacterial attachment [J].
Cunliffe, D ;
Alarcón, CD ;
Peters, V ;
Smith, JR ;
Alexander, C .
LANGMUIR, 2003, 19 (07) :2888-2899
[8]  
Davis KA, 2002, ADV POLYM SCI, V159, P1
[9]   The dawning era of polymer therapeutics [J].
Duncan, R .
NATURE REVIEWS DRUG DISCOVERY, 2003, 2 (05) :347-360
[10]   'Smart' polymers and what they could do in biotechnology and medicine [J].
Galaev, IY ;
Mattiasson, B .
TRENDS IN BIOTECHNOLOGY, 1999, 17 (08) :335-340