The role of hemicellulose in nanofibrillated cellulose networks

被引:106
作者
Arola, Suvi [1 ,2 ]
Malho, Jani-Markus [1 ]
Laaksonen, Paivi [1 ]
Lille, Martina [1 ]
Linder, Markus B. [1 ,3 ]
机构
[1] VTT Tech Res Ctr Finland, FI-02044 Espoo, Vtt, Finland
[2] Aalto Univ, Sch Sci & Technol, Dept Appl Phys, FI-00076 Aalto, Finland
[3] Aalto Univ, Sch Chem Technol, Dept Biotechnol & Chem Technol, FI-00076 Aalto, Finland
基金
芬兰科学院;
关键词
MICROFIBRILLATED CELLULOSE; ENZYMATIC-HYDROLYSIS; NANOFIBER NETWORK; ELASTIC-MODULUS; SURFACE-AREA; MODEL FILMS; NANOPAPER; AEROGELS; BIOCOMPOSITES; WOOD;
D O I
10.1039/c2sm26932e
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Cellulose nanofibrils show remarkable properties with applications in several fields of materials science, such as for composites, hydrogels, aerogels, foams, and coatings. Cellulose nanofibrils are typically produced by mechanical and enzymatic processing leading to fibrils having a width in the nanometer range and very high aspect ratios. The formation of percolating networks and interactions between fibrils lead to useful properties in for example gel formation and composites. In this work we studied how the residual xylan that is found in cellulose nanofibrils that have been produced from hardwood pulp affects these properties. We used enzymatic hydrolysis to specifically remove xylan and studied rheological properties, morphological features, and properties of paper-like films of cellulose nanofibrils. We found that removal of xylan enhances the formation of fibril networks, resulting in both stiffer gels and stronger films. However xylan also stabilizes the fibrils against flocculation. Also the history of processing of the preparations affects the results significantly.
引用
收藏
页码:1319 / 1326
页数:8
相关论文
共 56 条
[1]   Enzymatic Hydrolysis of Native Cellulose Nanofibrils and Other Cellulose Model Films: Effect of Surface Structure [J].
Ahola, S. ;
Turon, X. ;
Osterberg, M. ;
Laine, J. ;
Rojas, O. J. .
LANGMUIR, 2008, 24 (20) :11592-11599
[2]   Model films from native cellulose nanofibrils.: Preparation, swelling, and surface interactions [J].
Ahola, S. ;
Salmi, J. ;
Johansson, L. -S. ;
Laine, J. ;
Oesterberg, M. .
BIOMACROMOLECULES, 2008, 9 (04) :1273-1282
[3]   Properties and characterization of hydrophobized microfibrillated cellulose [J].
Andresen, Martin ;
Johansson, Leena-Sisko ;
Tanem, Bjorn Steinar ;
Stenius, Per .
CELLULOSE, 2006, 13 (06) :665-677
[4]   Immobilization-Stabilization of Proteins on Nanofibrillated Cellulose Derivatives and Their Bioactive Film Formation [J].
Arola, Suvi ;
Tammelin, Tekla ;
Setala, Harri ;
Tullila, Antti ;
Linder, Markus B. .
BIOMACROMOLECULES, 2012, 13 (03) :594-603
[5]   Cellulose Biocomposites-From Bulk Moldings to Nanostructured Systems [J].
Berglund, Lars A. ;
Peijs, Ton .
MRS BULLETIN, 2010, 35 (03) :201-207
[6]   Chemical compositions of hardwood and softwood pulps employing photoacoustic Fourier transform infrared spectroscopy in combination with partial least-squares analysis [J].
Bjarnestad, S ;
Dahlman, O .
ANALYTICAL CHEMISTRY, 2002, 74 (22) :5851-5858
[7]   Solid-State 13C NMR Study of a Composite of Tobacco Xyloglucan and Gluconacetobacter xylinus Cellulose: Molecular Interactions between the Component Polysaccharides [J].
Bootten, Tracey J. ;
Harris, Philip J. ;
Melton, Laurence D. ;
Newman, Roger H. .
BIOMACROMOLECULES, 2009, 10 (11) :2961-2967
[8]   Stimuli-responsive polymer nanocomposites inspired by the sea cucumber dermis [J].
Capadona, Jeffrey R. ;
Shanmuganathan, Kadhiravan ;
Tyler, Dustin J. ;
Rowan, Stuart J. ;
Weder, Christoph .
SCIENCE, 2008, 319 (5868) :1370-1374
[9]   Functionalization of Nanofibrillated Cellulose with Silver Nanoclusters: Fluorescence and Antibacterial Activity [J].
Diez, Isabel ;
Eronen, Paula ;
Osterberg, Monika ;
Linder, Markus B. ;
Ikkala, Olli ;
Ras, Robin H. A. .
MACROMOLECULAR BIOSCIENCE, 2011, 11 (09) :1185-1191
[10]   Review: current international research into cellulose nanofibres and nanocomposites [J].
Eichhorn, S. J. ;
Dufresne, A. ;
Aranguren, M. ;
Marcovich, N. E. ;
Capadona, J. R. ;
Rowan, S. J. ;
Weder, C. ;
Thielemans, W. ;
Roman, M. ;
Renneckar, S. ;
Gindl, W. ;
Veigel, S. ;
Keckes, J. ;
Yano, H. ;
Abe, K. ;
Nogi, M. ;
Nakagaito, A. N. ;
Mangalam, A. ;
Simonsen, J. ;
Benight, A. S. ;
Bismarck, A. ;
Berglund, L. A. ;
Peijs, T. .
JOURNAL OF MATERIALS SCIENCE, 2010, 45 (01) :1-33