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芴酮引发光接枝改性LDPE膜的研究
DOI: 10.3724/SP.J.1105.2012.12032 , PP. 784-788
Keywords: 芴酮 ,紫外光表面接枝 ,低密度聚乙烯薄膜 ,接枝率 ,接触角
Abstract:
采用紫外光引发接枝表面改性的方法,以芴酮(FL)为引发剂,在低密度聚乙烯(LDPE)薄膜表面上接枝丙烯酸(AA)、甲基丙烯酸(MAA)、丙烯酸甲酯(MA)、甲基丙烯酸甲酯(MMA)、丙烯酰胺(AM)等单体,以赋予薄膜表面新的化学性质.考察了引发剂浓度、紫外光的辐照时间、辐照强度、单体种类对LDPE薄膜接枝程度的影响.结果表明,在一定范围内,增加芴酮浓度,可以提高单体的接枝率,但当芴酮浓度达到5%时,接枝率反而下降.延长辐照时间至4min和提高紫外光的辐照强度达100W/m2,均有利于接枝反应的进行.不同单体在LDPE膜上的接枝能力与单体的活性、单体与基材的相容性等因素有关.接枝后,LDPE与水的接触角下降程度不仅与单体在膜上的接枝量有关,还与接枝单体的亲水性能密切相关.
References
[1] 1 Ma Z S, Huang X Y,Yang J S,Jiang P K.Chinese J Polym Sci,2010,28(1):1~11
[2] 3 Yang Q,Tian J,Xu Z K.Chinese J Polym Sci,2007,25(2):221~226
[3] 4 Zhang Y Z,Fan Z Q,Wu B G,Xu J T,Wang Q.Chinese J Polym Sci,2004,22(3):231~238
[4] 6 Cheng Yue(程岳),Liu Lianying(刘莲英),He Chenfeng(何辰凤),Yang Wantai(杨万泰).Polymer Materials Science and Engineering(高分子材料科学与工程),2005,21(4):98~101
[5] 7 Gan Shenghua(甘胜华),Deng Jianyuan(邓建元),Yang Wantai(杨万泰).Journal of Beijing University of Chemical Technology(北京化工大学学报),2008,35(4):61~64
[6] 8 Yang W T,R?nby B.Eur Polym J,1999,35:1557~1568
[7] 9 Liu Chuanyu(刘传玉),Liang Taishuo(梁泰硕),Su Dongmei(苏东妹),Yan Hong(闫虹),Hong Jialian(洪家琏).Chemistry and Adhesion(化学与粘合),2003,(3):134~136
[8] 10 Demadrille R,Firon M,Leroy J,Rannou P,Pron A.Advanced Functional Materials,2005,15:1547~1552
[9] 11 Demadrille R,Divisia-Blohorn B,Zagorska M,Quillard S,Lefrant S,Pron A.Electrochimica Acta,2005,50:1597~1603
[10] 13 Buket B,Atilla C,nal Ahmet M.Thin Solid Films,2008,516:7329~7334
[11] 17 Lincker F,Heinrich B,Bettignies R D,Rannou P,Pécaut J,Grévin B,Pron A,Donnio B,Demadrille R.J Mater Chem,2011,21:5238~5247
[12] 18 Zhang Juxian(张举贤),Xu Zhixian(许志献),Cao Weixiao(曹维孝),Li Fujin(李福锦).Acat Polymerica Sinica(高分子学报),1989,(4):493~498
[13] 2 Liu Lianying(刘莲英),Deng Jianping(邓建平),Yang Wantai(杨万泰).Science in China Series B:Chemistry (中国科学B辑:化学),2009,39(7):569~579
[14] 5 Xu Shaogang(徐绍刚),Sun Yufeng(孙玉凤),Du Jiuming(杜久明),Yang Wantai(杨万泰).Journal of Beijing University of Chemical Technology(北京化工大学学报),2000,27(4):29~31,39
[15] 12 Chochos C L,Tzanetos N P,Economopoulos S P,Gregoriou V G,Kallitsis J K.European Polymer Journal,2007,43:5065~5075
[16] 14 Shotaro H,Shinsuke I,Toshio F.Macromolecules,2009,42:3755~3760
[17] 15 Baier Moritz C,Huber J,Mecking S.J Am Chem Soc,2009,131:14267~14273
[18] 16 Pecher J,Huber J,Winterhalder M,Zumbusch A,Mecking S.Biomacromolecules,2010,11:2776~2780
[19] 19 Li Zhuang(李幢),Dai Longjun(戴龙军).Journal of Fudan University(Natural Science)(复旦学报自然科学版),1989,28(4):461~467
[20] 20 Yang Wantai(杨万泰),Yin Meizhen(尹梅贞),Deng Jianyuan(邓建元),Du Jiuming(杜久明).Chinese Polymer Bulletin (高分子通报),1999,(1):60~65,84
[21] 21 Yu Yibing(于毅冰),Liu Lianying(刘莲英),Sun Yufeng(孙玉凤),He Chenfeng(何辰凤),Yang Wantai(杨万泰).Acat Polymerica Sinica(高分子学报),2006,(3):455~460
[22] 22 Zhang Xingying(张兴英),Cheng Jue(程珏),Zhao Jingbo(赵京波).Polymer Chemistry (高分子化学).Beijing(北京):Chemical Industry Press(化学工业出版社),2006.74~82
[23] 23 Silverstein R M,Webster F X,Kiemle D J.Pectrometric Identification of Organic Compounds(有机化合物的波谱解析).Shanghai(上海):East China University of Science and Technology Press(华东理工大学出版社),2007.92~94
[24] 24 Li Y G,Liu J Y,Li Y S.Chinese Journal of Polymer Science,2010,28(1):101~106
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