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生物质纳米纤维由植(动)物纤维素拆解、分离得到,拥有精细的纳米结构、丰富的表面活性基团、优异的力学性能、良好的生物相容性和天然的网状结构,在新型功能型材料中应用前景广阔。本文在简要介绍其主要背景研究基础上,综合评述了纳米纤维在绿色储能(锂电池、超级电容器)、柔性纳米器件、可控透光材料、功能型模板材料、新型碳纳米材料、药物缓释与组织培养领域的研究现状。

Cellulose nanofiber is originally prepared from natural cellulosic resources such as wood,bamboo, agricultural residuals,and several marine animals.As a promising candidate for functional materials,cellulose nanofiber behaves numerous merits including excellent mechanical properties,well optical transmission,natural interconnected network,and abundant chemical groups on fiber surface.In this work,the present status of cel-lulose nanofiber for the preparation of green energy storages (Li-ion battery and supercapacitors),flexible nano-devices,controlled optical transmission materials,functional templates,novel plant-based carbon nanofiber, medicine carrier and tissue cultivation was summarized.

参考文献

[1] Robert J. Moon;Ashlie Martini;John Nairn.Cellulose nanomaterials review: structure, properties and nanocomposites[J].Chemical Society Reviews,20117(7):3941-3994.
[2] Ifuku, Shinsuke.Chitin and Chitosan Nanofibers: Preparation and Chemical Modifications[J].Molecules,201411(11):18367-18380.
[3] 赵燕燕;黄福祥.银基电接触材料的理论计算研究及发展现状[J].重庆理工大学学报(自然科学版),2014(3):58-64.
[4] Siro, I;Plackett, D.Microfibrillated cellulose and new nanocomposite materials: a review[J].Cellulose,20103(3):459-494.
[5] Douglas J.Gardner;Gloria S.Oporto;Ryan Mills.Adhesion and Surface Issues in Cellulose and Nanocellulose[J].Journal of Adhesion Science and Technology: The International Journal of Theoredtical and Basic Aspects of Adhesion Science and Its Applications in All Areas of Technology,20085/6(5/6):545-567.
[6] Dagang Liu;Qinglin Wu;Peter R. Change.Self-assembled liquid crystal film from mechanically defibrillated chitosan nanofibers[J].Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides,20111(1):686-689.
[7] Eichhorn, S.J..Cellulose nanowhiskers: Promising materials for advanced applications[J].Soft matter,20112(2):303-315.
[8] Yan Qing;Ronald Sabo;J.Y. Zhu.A comparative study of cellulose nanofibrils disintegrated via multiple processing approaches[J].Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides,20131(1):226-234.
[9] 李伟;王锐;刘守新.纳米纤维素的制备[J].化学进展,2010(10):2060-2070.
[10] Wang, Q.Q.;Zhu, J.Y.;Gleisner, R.;Kuster, T.A.;Baxa, U.;McNeil, S.E..Morphological development of cellulose fibrils of a bleached eucalyptus pulp by mechanical fibrillation[J].Cellulose,20125(5):1631-1643.
[11] 陈文帅;于海鹏;刘一星;蒋乃翔;陈鹏.木质纤维素纳米纤丝制备及形态特征分析[J].高分子学报,2010(11):1320-1326.
[12] Bei Wang;Mohini Sain.Isolation of nanofibers from soybean source and their reinforcing capability on synthetic polymers[J].Composites science and technology,200711/12(11/12):2521-2527.
[13] M. Paakko;M. Ankerfors;H. Kosonen.Enzymatic Hydrolysis Combined with Mechanical Shearing and High-Pressure Homogenization for Nanoscale Cellulose Fibrils and Strong Gels[J].Biomacromolecules,20076(6):1934-1941.
[14] Tsuguyuki Saito;Masayuki Hirota;Naoyuki Tamura.Individualization of Nano-Sized Plant Cellulose Fibrils by Direct Surface Carboxylation Using TEMPO Catalyst under Neutral Conditions[J].Biomacromolecules,20097(7):1992-1996.
[15] Henrikki Liimatainen;Miikka Visanko;Juho Antti Sirvio.Enhancement of the Nanofibrillation of Wood Cellulose through Sequential Periodate-Chlorite Oxidation[J].Biomacromolecules,20125(5):1592-1597.
[16] Youssef Habibi.Key advances in the chemical modification of nanocelluloses[J].Chemical Society Reviews,20145(5):1519-1542.
[17] Jingquan Han;Chengjun Zhou;Yiqiang Wu.Self-Assembling Behavior of Cellulose Nanoparticles during Freeze-Drying: Effect of Suspension Concentration, Particle Size, Crystal Structure, and Surface Charge[J].Biomacromolecules,20135(5):1529-1540.
[18] Zhu, H.;Jia, Z.;Chen, Y.;Weadock, N.;Wan, J.;Vaaland, O.;Han, X.;Li, T.;Hu, L..Tin anode for sodium-ion batteries using natural wood fiber as a mechanical buffer and electrolyte reservoir[J].Nano letters,20137(7):3093-3100.
[19] Lara Jabbour;Claudio Gerbaldi;Didier Chaussy.Microfibrillated cellulose-graphite nanocomposites for highly flexible paper-like Li-ion battery electrodes[J].Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology,201035(35):7344-7347.
[20] Hu, L.;Liu, N.;Eskilsson, M.;Zheng, G.;McDonough, J.;W?gberg, L.;Cui, Y..Silicon-conductive nanopaper for Li-ion batteries[J].Nano Energy,20131(1):138-145.
[21] Xinyi Chen;Hongli Zhu;Chanyuan Liu.Role of mesoporosity in cellulose fibers for paper-based fast electrochemical energy storage[J].Journal of Materials Chemistry, A. Materials for energy and sustainability,201328(28):8201-8208.
[22] Sang-Jin Chun;Eun-Sun Choi;Eun-Ho Lee.Eco-friendly cellulose nanofiber paper-derived separator membranes featuring tunable nanoporous network channels for lithium-ion batteries[J].Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology,201232(32):16618-16626.
[23] Jeong-Hoon Kim;Jung-Hwan Kim;Eun-Sun Choi;Hyung Kyun Yu;Jong Hun Kim;Qinglin Wu;Sang-Jin Chun;Sun-Young Lee;Sang-Young Lee.Colloidal silica nanoparticle-assisted structural control of cellulose nanofiber paper separators for lithium-ion batteries[J].Journal of Power Sources,2013Nov.15(Nov.15):533-540.
[24] Hayaka Fukuzumi;Shuji Fujisawa;Tsuguyuki Saito.Selective Permeation of Hydrogen Gas Using Cellulose Nanofibril Film[J].Biomacromolecules,20135(5):1705-1709.
[25] Hongli Zhu;Zhiqiang Fang;Colin Preston;Yuanyuan Li;Liangbing Hu.Transparent paper: fabrications, properties, and device applications[J].Energy & environmental science: EES,20141(1):269-287.
[26] Liangbing Hu;Guangyuan Zheng;Jie Yao;Nian Liu;Ben Weil;Martin Eskilsson;Erdem Karabulut;Zhichao Ruan;Shanhui Fan;Jason T. Bloking;Michael D. McGehee;Lars Wagberg;Yi Cui.Transparent and conductive paper from nanocellulose fibers[J].Energy & environmental science: EES,20132(2):513-518.
[27] Huang, J.;Zhu, H.;Chen, Y.;Preston, C.;Rohrbach, K.;Cumings, J.;Hu, L..Highly transparent and flexible nanopaper transistors[J].ACS nano,20133(3):2106-2113.
[28] Zheng, Qifeng;Cai, Zhiyong;Ma, Zhenqiang;Gong, Shaoqin.Cellulose Nanofibril/Reduced Graphene Oxide/Carbon Nanotube Hybrid Aerogels for Highly Flexible and All-Solid-State Supercapacitors[J].ACS applied materials & interfaces,20155(5):3263-3271.
[29] Kezheng Gao;Ziqiang Shao;Xue Wu.Cellulose nanofibers/reduced graphene oxide flexible transparent conductive paper[J].Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides,20131(1):243-251.
[30] Hirotaka Koga;Tsuguyuki Saito;Takuya Kitaoka.Transparent, Conductive, and Printable Composites Consisting of TEMPO-Oxidized Nanocellulose and Carbon Nanotube[J].Biomacromolecules,20134(4):1160-1165.
[31] Ming-Chun Hsieh;Changjae Kim;Masaya Nogi.Electrically conductive lines on cellulose nanopaper for flexible electrical devices[J].Nanoscale,201319(19):9289-9295.
[32] Miao Wang;Ilya V. Anoshkin;Albert G. Nasibulin;Juuso T. Korhonen;Jani Seitsonen;Jaakko Pere;Esko I. Kauppinen;Robin H.A. Ras;Olli Ikkala.Modifying Native Nanocellulose Aerogels with Carbon Nanotubes for Mechanoresponsive Conductivity and Pressure Sensing[J].Advanced Materials,201317(17):2428-2432.
[33] Hongli Zhu;Sepideh Parvinian;Colin Preston.Transparent nanopaper with tailored optical properties[J].Nanoscale,20139(9):3787-3792.
[34] Qing, Yan;Sabo, Ronald;Wu, Yiqiang;Zhu, J. Y.;Cai, Zhiyong.Self-assembled optically transparent cellulose nanofibril films: effect of nanofibril morphology and drying procedure[J].Cellulose,20152(2):1091-1102.
[35] Gutierrez, J.;Fernandes, S.C.M.;Mondragon, I.;Tercjak, A..Multifunctional hybrid nanopapers based on bacterial cellulose and sol-gel synthesized titanium/vanadium oxide nanoparticles[J].Cellulose,20133(3):1301-1311.
[36] Korhonen, J.T.;Hiekkataipale, P.;Malm, J.;Karppinen, M.;Ikkala, O.;Ras, R.H.A..Inorganic hollow nanotube aerogels by atomic layer deposition onto native nanocellulose templates[J].ACS nano,20113(3):1967-1974.
[37] Li, Zhaodong;Yao, Chunhua;Wang, Fei;Cai, Zhiyong;Wang, Xudong.Cellulose nanofiber-templated three-dimension TiO2 hierarchical nanowire network for photoelectrochemical photoanode[J].Nanotechnology,201450(50)
[38] Zhaodong Li;Chunhua Yao;Yanhao Yu;Zhiyong Cai;Xudong Wang.Highly Efficient Capillary Photoelectrochemical Water Splitting Using Cellulose Nanofiber-Templated TiO_2 Photoanodes[J].Advanced Materials,201414(14):2262-2267.
[39] Philippe Tingaut;Tanja Zimmermann;Gilles Sebe.Cellulose nanocrystals and microfibrillated cellulose as building blocks for the design of hierarchical functional materials[J].Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology,201238(38):20105-20111.
[40] Libo Deng;Robert J. Young;Ian A. Kinloch.Carbon nanofibres produced from electrospun cellulose nanofibres[J].Carbon: An International Journal Sponsored by the American Carbon Society,2013:66-75.
[41] Kong, K.;Deng, L.;Kinloch, I.A.;Young, R.J.;Eichhorn, S.J..Production of carbon fibres from a pyrolysed and graphitized liquid crystalline cellulose fibre precursor[J].Journal of Materials Science,201214(14):5402-5410.
[42] Wei Luo;Jenna Schardt;Clement Bomm.Carbon nanofibers derived from cellulose nanofibers as a long-life anode material for rechargeable sodium-ion batteries[J].Journal of Materials Chemistry, A. Materials for energy and sustainability,201336(36):10662-10666.
[43] Jazaeri, E.;Tsuzuki, T..Effect of pyrolysis conditions on the properties of carbonaceous nanofibers obtained from freeze-dried cellulose nanofibers[J].Cellulose,20132(2):707-716.
[44] Kolakovic,R.;Laaksonen,T.;Peltonen,L.;Laukkanen,A.;Hirvonen,J..Spray-dried nanofibrillar cellulose microparticles for sustained drug release[J].International Journal of Pharmaceutics,20121/2(1/2):47-55.
[45] Nanofibrillar cellulose films for controlled drug delivery[J].European journal of pharmaceutics and biopharmaceutics: official journal of Arbeitsgemeinschaft fuer Pharmazeutische Verfahrenstechnik e.V,20122(2):308-315.
[46] Valo, H.;Kovalainen, M.;Laaksonen, P.;H?kkinen, M.;Auriola, S.;Peltonen, L.;Linder, M.;J?rvinen, K.;Hirvonen, J.;Laaksonen, T..Immobilization of protein-coated drug nanoparticles in nanofibrillar cellulose matrices-Enhanced stability and release[J].Journal of Controlled Release: Official Journal of the Controlled Release Society,20113(3):390-397.
[47] Valo, H.K.;Laaksonen, P.H.;Peltonen, L.J.;Linder, M.B.;Hirvonen, J.T.;Laaksonen, T.J..Multifunctional hydrophobin: Toward functional coatings for drug nanoparticles[J].ACS nano,20103(3):1750-1758.
[48] Hanna Valo;Suvi Arola;P?ivi Laaksonen;Mika Torkkeli;Leena Peltonen;Markus B Linder;Ritva Serimaa;Shigenori Kuga;Jouni Hirvonen;Timo Laaksonen.Drug release from nanoparticles embedded in four different nanofibrillar cellulose aerogels.[J].European journal of pharmaceutical sciences,20131(1):69-77.
[49] Bhattacharya, M.;Malinen, M.M.;Lauren, P.;Lou, Y.-R.;Kuisma, S.W.;Kanninen, L.;Lille, M.;Corlu, A.;Guguen-Guillouzo, C.;Ikkala, O.;Laukkanen, A.;Urtti, A.;Yliperttula, M..Nanofibrillar cellulose hydrogel promotes three-dimensional liver cell culture (Conference Paper)[J].Journal of Controlled Release: Official Journal of the Controlled Release Society,20123(3):291-298.
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