OALib Journal期刊
ISSN: 2333-9721
费用:99美元
|
|
|
基于ATRP接枝改性木质素的研究进展
DOI: 10.11777/j.issn1000-3304.2015.15172, PP. 1363-1376
Keywords: 木质素,接枝共聚,改性,原子转移自由基聚合(ATRP)
Abstract:
木质素是仅次于纤维素的第二大可再生生物质资源,也是一种环境友好的有机高分子材料.原子转移自由基聚合(atomtransferradicalpolymerization,ATRP)是近年来迅速发展并有着重要应用价值的一种"活性"/可控自由基聚合技术.本文结合本课题组目前的研究工作和近几年的相关报道,简述了ATRP在木质素接枝共聚方面的最新研究进展.综述了采用ATRP对木质素接枝共聚改性的方法,并采用该方法在木质素表面接枝不同功能性单体,赋予木质素表面温敏性、离子响应性、气体开关和基因传递等多种特殊性能的研究概况.最后介绍了AGETATRP(activatorsgeneratedbyelectrontransferATRP)在木质素接枝共聚反应中的应用.
References
[1] | 1 Luque R, Herrero-Davila L,Campelo J M,Clark J H,Hidalgo J M,Luna D,Marinas J M,Romero A A.Energ Environ Sci,2008,1(5):542~564
|
[2] | 2 Zakzeski J,Bruijnincx P C A,Jongerius A L,Weckhuysen B M.Chem Rev,2010,110(6):3552~3599
|
[3] | 3 Davin L B,Jourdes M,Patten A M,Kim K-W,Vassao D G,Lewis N G.Nat Prod Rep,2008,25(6):1015~1090
|
[4] | 40 Hilburg S L,Elder A N,Chung H,Ferebee R L,Bockstaller M R,Washburn N R.Polymer,2014,55(4):995~1003
|
[5] | 41 Liu X H,Wang J F,Yu J,Zhang M M,Wang C P,Xu Y Z,Chu F X.Int J Biol Macromol,2013,60:309~315
|
[6] | 42 Wang J F,Yao K J,Korich A L,Li S G,Ma S G,Ploehn H J,Iovine P M,Wang C P,Chu F X,Tang C B.J Polym Sci Part A:Polym Chem,2011,49(17):3728~3738
|
[7] | 43 Min K,Matyjaszewski K.Macromolecules,2005,38(20):8131~8134
|
[8] | 44 Min K,Gao H F,Matyjaszewski K.J Am Chem Soc,2005,127(11):3825~3830
|
[9] | 45 Jakubowski W,Matyjaszewski K.Macromolecules,2005,38(10):4139~4146
|
[10] | 46 Matyjaszewski K,Coca S,Gaynor S G,Wei M L,Woodworth B E.Macromolecules,1997,30(23):7348~7350
|
[11] | 47 Li H F,Pang Z B,Gao P,Wang L L.RSC Adv,2015,5(67):54387~54394
|
[12] | 48 Wang Xinhong(王新红),Li Yang(李杨),Zhang Chunqing(张春庆),Song Tianxi(宋天喜),Wang Yurong(王玉荣).Progress in Chemitry(化学进展),2008,20(11):1726~1732
|
[13] | 49 Zhang Liwu(张立武),Li Yuanyuan(李园园),Zheng Yan(郑妍),Xiong Banghu(熊邦虎).Polymer Bulletin(高分子通报),2011,(3):31~35
|
[14] | 50 Li Qiang(李强),Zhang Lifen(张丽芬),Bo Liangjiu(柏良久),Miu Jie(缪洁),Cheng Zhenping(程振平),Zhu Xiulin(朱秀林).Progress in Chemitry(化学进展),2010,22(11):2079~2088
|
[15] | 4 Kubo S,Kadla J F.J Appl Polym Sci,2005,98(3):1437~1444
|
[16] | 5 Huang Jin(黄进),Zhou Ziyan(周紫燕).Polymer Bulletin(高分子通报),2007,(1):50~57 6 Deng Yonghong(邓永红),Li Zhuoxi(黎卓熹),Qiu Xueqing(邱学青),Zhao Dacheng(赵大成).Acta Polymerica Sinica(高分子学报),2015,(5):589~595
|
[17] | 7 Qiu Xueqing(邱学青),Feng Xuemin(冯雪敏),Yang Dongjie(杨东杰),Li Rong(李荣).Acta Polymerica Sinica(高分子学报),2015,(1):72~79
|
[18] | 8 Liang F B,Song Y L,Huang C P,Li Y X,Chen B H.Ind Eng Chem Res,2012,52(3):1267~1274
|
[19] | 9 Wu Y,Zhang S Z,Guo X Y,Huang H L.Bioresour Technol,2008,99(16):7709~7715
|
[20] | 10 Dong Z B,Wang L L,Zhao S X.J Arid Environ,2008,72(7):1388~1393
|
[21] | 11 Zhang W,Ma Y F,Wang C P,Li S H,Zhang M M,Chu F X.Ind Crop Prod,2013,43:326~333
|
[22] | 12 Sasaki C,Wanaka M,Takagi H,Tamura S,Asada C,Nakamura Y.Ind Crop Prod,2013,43:757~761
|
[23] | 13 Gosselink R J A,de Jong E,Guran B,Ab?cherli A.Ind Crop Prod,2004,20(2):121~129
|
[24] | 14 Stewart D.Ind Crop Prod,2008,27(2):202~207
|
[25] | 15 Huber G W,Iborra S,Corma A.Chem Rev,2006,106(9):4044~4098
|
[26] | 16 Liu S W,Zhang C,Li L,Yu S T,Xie C X,Liu F S,Song Z Q.Ind Engin Chem Res,2014,53(49):19370~19374
|
[27] | 17 Li Zhongzheng(李忠正).Journal of Nanjing Forestry University (Natural Science Edition)(南京林业大学学报(自然科学版)),2012,36(1):1~7
|
[28] | 18 Ye D Z,Jiang X C,Xia C,Liu L,Zhang X.Carbohydr Polym,2012,89(3):876~882
|
[29] | 19 Mohamad I M N,Ahmed-Haras M R,Sipaut C S,Aboul-Enein H Y,Mohamed A A.Carbohydr Polym,2010,80(4):1102~1110
|
[30] | 20 Mu Huanzhen(穆怀珍),Zheng Tao(郑涛),Huang Yanchu(黄衍初),Zhang Chunping(张春萍),Liu Chen(刘晨).Environmental Chemistry(环境化学),2005,24(4):443~445
|
[31] | 21 Li Fengqi(李凤起),Zhang Qi(张琦),Liu Xianglan(刘香兰).Journal of Qingdao University of Science and Technology(青岛科技大学学报),2003,24(1):16~18
|
[32] | 22 Mai C,Schormann W,Hüttermann A,Kappl R,Hüttermann J.Enzyme Microb Technol,2002,30(1):66~72
|
[33] | 23 Mai C,Milstein O,Hüttermann A.J Biotechnol,2000,79(2):173~183
|
[34] | 24 Phillips R B,Brown W,Stannett V T.J Appl Polym Sci,1972,16(1):1~14
|
[35] | 25 Li H F,Zhang Q S,Gao P,Wang L L.J Appl Polym Sci,2015,DOI:10.1002/APP.41900
|
[36] | 26 Wang J S,Matyjaszewski K.J Am Chem Soc,1995,117(20):5614~5615
|
[37] | 27 Kato M,Kamigaito M,Sawamoto M,Higashimura T.Macromolecules,1995,28(5):1721~1723
|
[38] | 28 Pan Caiyuan(潘才元),Lou Xudong(楼旭东),Wang Yingli(王颖莉),Wu Chengpei(吴承佩).Acta Polymerica Sinica(高分子学报),1998,(3):311~316
|
[39] | 29 Hong Chunyan(洪春雁),Pan Caiyuan(潘才元).Chemistry(化学通报),2004,(4):246~256
|
[40] | 30 Hong Chunyan(洪春雁),Pan Caiyuan(潘才元).Chemistry(化学通报),2004,(5):317~326
|
[41] | 31 Hong Chunyan(洪春雁),Pan Caiyuan(潘才元).Chemistry(化学通报),2003,(6):363~372
|
[42] | 32 Yuan Jinying(袁金颖),Wang Yanmei(王延梅),Pan Caiyuan(潘才元).Polymer Materials Science and Engineering(高分子材料科学与工程),2002,18(5):77~79
|
[43] | 33 Yuan Jinying(袁金颖),Lou Xudong(楼旭东),Pan Caiyuan(潘才元).Chemistry(化学通报),2000,(3):10~16
|
[44] | 34 Sui X F,Yuan J Y,Zhou M,Zhang J,Yang H J,Yuan W Z,Wei Y,Pan C Y.Biomacromolecules,2008,9(10):2615~2620
|
[45] | 35 Kim Y S,Kadla J F.Biomacromolecules,2010,11(4):981~988
|
[46] | 36 Gao G Z,Dallmeyer J I,Kadla J F.Biomacromolecules,2012,13(11):3602~3610
|
[47] | 37 Yu J,Wang J F,Wang C P,Liu Y P,Xu Y Z,Tang C B,Chu F X.Macromol Rapid Commun,2015,36(4):398~404
|
[48] | 38 Liu X H,Yin H,Zhang Z X,Diao B S,Li J.Colloid Surf B:Biointerfaces,2015,125:230~237
|
[49] | 39 Qian Y,Zhang Q,Qiu X Q,Zhu S P.Green Chem,2014,16(12):4963~4968
|
Full-Text
|
|
Contact Us
service@oalib.com QQ:3279437679 
WhatsApp +8615387084133
|
|