OALib Journal期刊
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从Hansen三维溶度参数探讨TMPTA-St在乙醇-水混合溶剂中沉淀聚合形成单分散聚合物微球的边界条件
DOI: 10.3724/SP.J.1105.2013.12431, PP. 1099-1107
Keywords: 沉淀聚合,单分散聚合物微球,三维溶度参数,三羟甲基丙烷三丙烯酸酯,乙醇-水混合溶剂
Abstract:
以三羟甲基丙烷三丙烯酸酯(TMPTA)作交联剂,苯乙烯(St)作共聚单体,在不同TMPTA/St质量比下在乙醇与水的混合溶剂中进行沉淀聚合,对单体转化率和微球收率以及微球单分散性等参数进行了表征.对相应不同水含量的混合溶剂以及混合单体的Hansen三维溶度参数进行了计算,尝试对不同聚合条件下混合溶剂与混合单体的三维溶度参数进行比较以建立一个形成单分散微球的边界条件,为通过沉淀聚合制备单分散微球提供一个判断方法.在本文实验条件下,使用乙醇或其与水的混合物为聚合介质,当共混溶剂与共混单体的极性溶度参数之差Δδp和氢键溶度参数之差Δδh分别为5.0和12.4,9.2和20.1以及6.0和10.0MPa1/2时,在由这3个实验点组成的区域之内进行沉淀聚合即可以制得单分散聚合物微球.当Hansen溶度参数之差(Δδp或Δδh)超出此范围时,沉淀聚合所制得聚合物微球分散度迅速变宽,甚至在聚合过程中凝胶化.色散溶度参数变化甚微,难以由此建立单分散微球的形成条件.
References
[1] | 1 Brandford E B, Vanderhoff J W.J Appl Phys,1955,26:864~871
|
[2] | 2 Cao Le(曹乐),Liu Lianying(刘莲英),Yang Wantai(杨万泰).Acta Polymerica Sinica(高分子学报),2012,(2):117~124
|
[3] | 5 Perrier R,Héroguez V,Thienpont A,Babot O,Toupance T.J Chromatogr A,2008,1179:2~8
|
[4] | 6 Hayashi T,Ikada Y.Biotechnol Bioeng,1990,35:518~524
|
[5] | 8 Okubo M,Katayama Y,Yamamoto Y.Colloid Polym Sci,1991,269:217~221
|
[6] | 9 Chen S A,Chang H S.J Polym Sci A:Polym Chem,1990,28:2547~2561
|
[7] | 18 Jiang X,Zhu X,Kong X Z.Chem Eng J,2012,213:214~217
|
[8] | 19 Hildebrand J H,Scott R L.The Solubility of Nonelectrolytes,3rded.New York:Reinhold Publishing Corporation,1950
|
[9] | 20 Li K,St?ver H D H.J Polym Sci Part A:Polym Chem,1993,31:3257~3263
|
[10] | 21 Bai F,Yang X L,Huang W Q.Chinese J Polym Sci,2006,24:163~171
|
[11] | 22 Gu X,Zhu X,Kong X Z,Zhang Z.Soft Matter,2011,7:4055~4061
|
[12] | 23 Hansen C M.Hansen Solubility Parameters:A User’s Handbook.2nd ed.Boca Raton:CRC Press,2007
|
[13] | 24 Zhang Zhao(张召),Gu Xiangling(顾相伶),Zhu Xiaoli(朱晓丽),Kong Xiangzheng(孔祥正).Acta Physico-Chimica Sinica(物理化学学报),2012,28:892~896
|
[14] | 25 Brandrup J,Immergut E H,Grulke E A.Polymer Handbook.4th ed.New York:John Wiley & Sons,Inc.,1999
|
[15] | 26 Lu Xianyong(鹿现永),Huang Da(黄达),Yang Xinlin(杨新林),Huang Wenqiang(黄文强).Acta Polymerica Sinica(高分子学报),2007,(2):103~107
|
[16] | 3 Deng Wei(邓伟),Chen Guo(陈国),Wang Manyi(王满意),Wu Xi(吴溪),Kan Chengyou(阚成友).Acta Polymerica Sinica(高分子学报),2011,(3):307~312
|
[17] | 4 Cheng Guanzhi(程冠之),Deng Wei(邓伟),Hu Yang(胡杨),Kan Chengyou(阚成友).Acta Polymerica Sinica(高分子学报),2012,(2):111~116
|
[18] | 7 Chern C S.Prog Polym Sci,2006,31:443~486
|
[19] | 10 Kim K,Kim D.J Appl Polym Sci,2005,96:200~212
|
[20] | 11 Nakashima T,Yamada Y,Yoshizawa H.Colloid Polym Sci,2007,285:1487~1493
|
[21] | 12 Ma G H,Sone H,Omi S.Macromolecules,2004,37:2954~2964
|
[22] | 13 Jiang Y,Yang X,Ma C,Wang C,Li H,Dong F,Zhai X,Yu K,Lin Q,Yang B.Small,2010,6:2673~2677
|
[23] | 14 a.Downey J S,Frank R S,Li W H,St?ver H D H.Macromolecules,1999,32:2838~2844;
|
[24] | b.Downey J S,McIsaac G,Frank R S,St?ver H D H.Macromolecules,2001,34:4534~4541
|
[25] | 15 Kong X Z,Gu X,Zhu X,Zhang L.Macromol Rapid Commun,2009,30:909~914
|
[26] | 16 Jiang Wenqiao(姜文巧),Zhang Lina(张利娜),Gu Xiangling(顾相伶),Zhu Xiaoli(朱晓丽),Kong Xiangzheng(孔祥正).Acta Polymerica Sinica(高分子学报),2013,(3):406~413
|
[27] | 17 Jiang X,Kong X Z,Zhu X.J Polym Sci Part A:Polym Chem,2011,49:4492~4497
|
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