中文
Announcement
More
Progress in Chemistry 2007, Vol. 19 Issue (10): 1568-1575 Previous Articles   Next Articles

• Review •

Preparation of Nanocellulose

Ye Daiyong**   

  • Received: Revised: Online: Published:
PDF ( 7779 ) Cited
Export

EndNote

Ris

BibTeX

In nanometer size range, manipulating cellulose molecules and supramolecular crystals, structurally designing and assembling stable multiple patterns, thus creating excellent functional new nano fine chemicals & materials are the scientific frontier areas and hot topics of cellulose science. In order to study the progress on nanocellulose preparation method, the basis of nanocellulose chemistry is outlined; three kinds of nanocellulose were introduced: nanocellulose crystal (whiskers), nanocellulose composite and nanocellulose fiber. Five methods of preparation of nanocellulose were reviewed: the chemical method for the preparation of nanocellulose crystal & whiskers, the biological method for the preparation of bacterial cellulose, the physical method for the preparation of nanocellulose fiber, the synthetic method and the electrospinning method for the preparation of nanocellulose fiber. The five methods were discussed. The controllable structure designing of supramolecular cellulose, the stereochemical & regioselective controlling and preparation, the self-assembly process mechanism (such as the molecular recognition and site identification) and the mechanism of multi-scale effect are the main topics of the basic theoretical research. The new, green, low energy consumption, rapid and efficient method is the development trend of nanocellulose preparation.

CLC Number: 

[ 1 ] Favier V , Canova G R , Cavaille J Y, et al . Polym. Adv.Technol . , 1995 , 6(5) : 351 —355
[ 2 ] 王能(Wang N) , 丁恩勇(Ding E Y) , 程 时(Chen R S) . 高分子学报(Acta Polymerica Sinica) , 2006 , 8 : 982 —987
[ 3 ] Klemm D , Schumann D , Kramer F , et al . Adv. Polym. Sci . ,2006 , 205 : 49 —96
[ 4 ] 黎国康(Li G K) , 丁恩勇(Ding E Y) , 李小芳(Li X F) 等. 纤维素科学与技术(Journal of Cellulose Science and Technology) ,2002 , 10(2) : 12 —19
[ 5 ] Grunert M. Cellulose Nanocrystals : Preparation , Surface Modification , and Application in Nanocomposites. Ph D.Dissertation of State University of New York , 2002
[ 6 ] Klemm D , Schnabelrauch M, Stein A , et al . Papier , 1991 , 45(12) : 773 —778
[ 7 ] Klemm D , Heublein B , Fink H P , et al . Angew. Chem. Int .Ed. , 2005 , 44 : 3358 —3393
[ 8 ] Ye D Y, Montane D , Farriol X. Carbohydr. Polym. , 2005 , 61(4) : 446 —454
[ 9 ] Ye D Y, Montane D , Farriol X. Carbohydr. Polym. , 2005 , 62(3) : 258 —266
[10] Ye D Y, Farriol X. Cellulose , 2005 , 12(5) : 507 —512
[11] 高洁( Gao J ) , 汤列贵( Tang L G) . 纤维素科学(Cellulose Science) . 北京: 科学出版社(Beijing : Scientific Press ) , 1996
[12] Atalla R H , VanderHart D L. Science , 1984 , 223 : 283 —285
[13] Kondo T , Togawa E , Brown R M. Biomacromolecules , 2001 , 2(4) : 1324 —1330
[14] Brown R M. J . Polym. Sci . Part A: Polym. Chem. , 2004 , 42(3) : 487 —495
[15] Jarvis M. Nature , 2003 , 426 : 611 —612
[16] 叶代勇(Ye D Y) , 傅和青(Fu H Q) , 黄洪(Huang H) , 陈焕钦(Chen H Q) . 化工学报(Journal of Chemical Industry and Engineering (China) ) , 2006 , 57(8) : 1782 —1791
[17] Beck-Candanedo S , Roman M, Gray D G. Biomacromolecules ,2005 , 6(2) : 1048 —1054
[18] Bondeson D , Mathew A , Oksman K. Cellulose , 2006 , 13 (2) :171 —180
[19] Roman M, Winter W T. ACS Symposium Series-Cellulose Nanocomposites. 2006 , 938 : 99 —113
[20] Gray D G, Roman M. ACS Symposium Series-Cellulose Nanocomposites. 2006 , 938 : 26 —32
[21] Sturcova A , Davies R G, Eichhorn J S. Biomacromolecules ,2005 , 6 : 1055 —1061
[22] Gindl W, Keckes J . Polymer , 2005 , 46(23) : 10221 —10225
[23] Oksman K, Sain M (Editors) . Proceedings of the 229th Meeting of the American Chemical Society. California : Elsevier , 2005
[24] Kvien I , Tanem B S , Oksman K. 8th International Conference on Woodfiber-Plastic Composites and Other Natural Fibers. Madison :Elsevier , 2005. 311 —319
[25] 杨光(Yang G) , 近藤哲男(Tetsuo K) . 科学(上海) (Science (Shanghai) ) . 2006 , 58(2) : 14 —17
[26] Kim C W, Kim D S , Kang S Y, Marquez M, Joo YL. Polymer ,2006 , 47(14) : 5097 —5107
[27] Kim C W, Frey M W, Marquez M, Joo Y L. J . Polym. Sci . Part B : Polym. Phys. , 2005 , 43(13) : 1673 —1683
[28] Kulpinski P. J . Appl . Polym. Sci . , 2005 , 98(4) : 1855 —1859
[29] 杨礼富(Yang L F) . 微生物学通报(Journal of Microbiology) ,2003 , 30(4) : 95 —98
[30] Kobayashi S , Ohmae M. Adv. Polym. Sci . , 2006 , 194 : 159 —210
[31] Nakatsubo F , Kamitakahara H , Hori M. J . Am. Chem. Soc. ,1996 , 118 (7) : 1677 —1681
[32] De Souza Lima M M, Borsali R. Macromol . Rapid Commun. ,2004 , 25 : 771 —787
[33] Brumer H , Zhou Q , Baumann M J , Carlsson K, Teeri T T. J .Am. Chem. Soc. , 2004 , 126 ; 5715 —5721
[34] 叶代勇(Ye D Y) , 陈焕钦(Chen H Q) . 第三届化学工程与生物化工年会( The Third Annual Conference of Chemical Engineering and Biological Chemical Engineering) . 中国广西(GuangXi , China) , 2006
[35] Fink H P , Purz H J , Bohn A , et al . Macromol . Symp. , 1997 ,120 : 207 —217
[36] Asako H , Masaki T , Fumitaka H. Cellulose , 1997 , 4(3) : 239 —245
[37] 马承铸(Ma C C) , 顾真荣( Gu Z R) . 上海农业学报(Acta Agriculturae Shanghai) , 2001 , 17(4) : 93 —98
[38] Turbak A F , Snyder F W, Sandberg K R. EP 51 230 , 1982
[39] Nakagaito A N , Yano H. ACS Symposium Series2Cellulose Nanocomposites , 2006 , 938 : 151 —168
[40] Andresen M, Johansson L S , TanemB S , et al . Cellulose , 2006 ,13(6) : 665 —677
[41] Takahashi N , Okubo K, Fujii T. Bamboo J . , 2005 , 22 : 81 —92
[42] Sain M, Oksman K. ACS Symposium Series-Cellulose Nanocomposites , 2006 , 938 : 2 —8
[43] Samir M A S A , Alloin F , Dufresne A. Biomacromolecules ,2005 , 6(2) : 612 —626
[44] Oksman K, Mathew A P , Bondeson D , et al . Compos. Sci .Technol . , 2006 , 66(15) : 2776 —2784
[45] Ljungberg N , Cavaille J Y, Heux L. Polymer , 2006 , 47 (18) :6285 —6292
[46] Podsiadlo P , Choi S Y, Shim B , et al . Biomacromolecules ,2005 , 6(6) : 2914 —2918
[47] Araki J , Wada M, Kuga S. Langmuir , 2001 , 17 (1) : 21 —27
[48] Grunert M, Winter W T. Polym. Mater. Sci . Eng. , 2002 , 86 :367 —368
[49] Gousse C , Chanzy H , Exoffier G, et al . Polymer , 2002 , 43(9) :2645 —2651
[50] Montanari S , Roumani M, Heux L , et al . Macromolecules , 2005 ,38(5) : 1665 —1671
[51] Ljungberg N , Bonini C , Bortolussi F , et al . Biomacromolecules ,2005 , 6(5) : 2732 —2739
[52] White L A , Delhom C. Proceedings of Beltwide Cotton Conferences. San Antonio : National Cotton Council of America ,2006 , 2373 : 1 —5
[53] Noorani S , Simonsen J , Atre S. ACS Symposium Series-Cellulose Nanocomposites , 2006 , 938 : 209 —220
[54] Mathew A P , Chakraborty A , Oksman K. et al . ACS Symposium Series-Cellulose Nanocomposites , 2006 , 938 : 114 —131
[55] Kobayashi S. J . Polym. Sci . Part A: Polym. Chem. , 2005 , 43(4) : 693 —710
[56] 宋桂经(Song G J ) . 纤维素科学与技术(Journal of Cellulose Science and Technology) , 1998 , 6(2) : 1 —4
[57] Hashimoto T , Tanaka H , Koizumi S , et al . Biomacromolecules ,2006 , 7(9) : 2479 —2482
[58] Jaeger R , Bergshoef M M, Batlle C M I , et al . Macromol .Symposia , 1998 , 127 : 141 —150
[59] Frey M, Joo Y. Kim C W. Polym. Prepr. , 2003 , 44(2) : 168 —169
[60] Zhao S L , Wu X H , Wang L G, et al . Cellulose , 2003 , 10(4) :405 —409
[61] 赵胜利(Zhao S L) , 宣英男(Xuan Y N) , 黄勇(Huang Y) . 高分子材料科学与工程( Polymer Materials Science &Engineering) . 2004 , 20(2) : 151 —154
[62] Ma Z W, Kotaki M, Ramakrishna S. J . Membr. Sci . , 2005 , 265(1/2) : 115 —123
[63] Uppal R , Ramaswamy G N. Proceedings of Beltwide Cotton Conferences. New Orleans : National Cotton Council of America ,2005 , 2191 : 1 —12
[64] 吴晓辉(Wu X H) , 王林格(Wang L G) , 黄勇(Huang Y) . 高分子学报(Acta Polymerica Sinica) , 2006 , 2 : 264 —268

[1] Dandan Wang, Zhaoxin Lin, Huijie Gu, Yunhui Li, Hongji Li, Jing Shao. Modification and Application of Bi2MoO6 in Photocatalytic Technology [J]. Progress in Chemistry, 2023, 35(4): 606-619.
[2] Xuan Li, Jiongpeng Huang, Yifan Zhang, Lei Shi. 1D Nanoribbons of 2D Materials [J]. Progress in Chemistry, 2023, 35(1): 88-104.
[3] Yuexiang Zhu, Weiyue Zhao, Chaozhong Li, Shijun Liao. Pt-Based Intermetallic Compounds and Their Applications in Cathodic Oxygen Reduction Reaction of Proton Exchange Membrane Fuel Cell [J]. Progress in Chemistry, 2022, 34(6): 1337-1347.
[4] Caiwei Wang, Dongjie Yang, Xueqing Qiu, Wenli Zhang. Applications of Lignin-Derived Porous Carbons for Electrochemical Energy Storage [J]. Progress in Chemistry, 2022, 34(2): 285-300.
[5] Xiangkang Cao, Xiaoguang Sun, Guangyi Cai, Zehua Dong. Durable Superhydrophobic Surfaces: Theoretical Models, Preparation Strategies, and Evaluation Methods [J]. Progress in Chemistry, 2021, 33(9): 1525-1537.
[6] Zhen Zhang, Shuang Zhao, Guobing Chen, Kunfeng Li, Zhifang Fei, Zichun Yang. Preparation and Applications of Silicon Carbide Monolithic Aerogels [J]. Progress in Chemistry, 2021, 33(9): 1511-1524.
[7] Jinzhao Li, Zheng Li, Xupin Zhuang, Jixian Gong, Qiujin Li, Jianfei Zhang. Preparation of Cellulose Nanocrystallines and Their Applications in CompositeMaterials [J]. Progress in Chemistry, 2021, 33(8): 1293-1310.
[8] Lizhong Chen, Qiaobin Gong, Zhe Chen. Preparation and Application of Ultra-Thin Two Dimensional MOF Nanomaterials [J]. Progress in Chemistry, 2021, 33(8): 1280-1292.
[9] Xiaoxiao Xiang, Xiaowen Tian, Huie Liu, Shuang Chen, Yanan Zhu, Yuqin Bo. Controlled Preparation of Graphene-Based Aerogel Beads [J]. Progress in Chemistry, 2021, 33(7): 1092-1099.
[10] Ying Yang, Shupeng Ma, Yuan Luo, Feiyu Lin, Liu Zhu, Xueyi Guo. Multidimensional CsPbX3 Inorganic Perovskite Materials: Synthesis and Solar Cells Application [J]. Progress in Chemistry, 2021, 33(5): 779-801.
[11] Ying Yang, Yuan Luo, Shupeng Ma, Congtan Zhu, Liu Zhu, Xueyi Guo. Advances of Electron Transport Materials in Perovskite Solar Cells: Synthesis and Application [J]. Progress in Chemistry, 2021, 33(2): 281-302.
[12] Ying Geng, Mohe Zhang, Jin Fu, Ruisha Zhou, Jiangfeng Song. MOF-74 and Its Compound: Diverse Synthesis and Broad Application [J]. Progress in Chemistry, 2021, 33(12): 2283-2307.
[13] Wen Zhou, Xin Zhang, Hongpeng Ma, Jie Xu, Bin Guo, Panxin Li. Chemical and Physical Mechanism and Method of Preparation of Thermoplastic Starch [J]. Progress in Chemistry, 2021, 33(11): 1972-1982.
[14] Runtian Wang, Chunli Liu, Zhenbin Chen. Imprinted Composite Membranes [J]. Progress in Chemistry, 2020, 32(7): 989-1002.
[15] Jianlei Qi, Qinqin Xu, Jianfei Sun, Dan Zhou, Jianzhong Yin. Synthesis, Characterization and Analysis of Graphene-Supported Single-Atom Catalysts [J]. Progress in Chemistry, 2020, 32(5): 505-518.
Viewed
Full text


Abstract

Preparation of Nanocellulose