Preparation and properties of cellulosic nanomaterials
Hierarchical structure and multi-level organization of cellulose. Preparation of cellulosic nanomaterials. Mechanically-induced deconstructing strategy. Cellulose properties (mechanical, thermal, and barrier) that change during nanoscaling process.
Рубрика | Химия |
Вид | статья |
Язык | английский |
Дата добавления | 13.04.2022 |
Размер файла | 1,5 M |
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39. Lin N., Dufresne A. (2014a) Nanocellulose in biomedicine: Current status and future prospect. European Polymer Journal, 59: 302-325
40. Lin N., Dufresne A. (2014b) Surface chemistry, morphological analysis and properties of cellulose nanocrystals with gradiented sulfation degrees. Nanoscale, 6(10): 5384-5393
41. Liu D., Zhong T., Chang P.R., Li K., Wu Q. (2010) Starch composites reinforced by bamboo cellulosic crystals. Bioresource Technology, 101(7): 2529-2536
42. Liu Y., Wang H., Yu G., Yu Q., Li B., Mu X. (2014) A novel approach for the preparation of nanocrystalline cellulose by using phosphotungstic acid. Carbohydrate Polymers, 110: 415-422
43. Lu Q., Tang L., Lin F., Wang S., Chen Y., Chen X., Huang B. (2014) Preparation and characterization of cellulose nanocrystals via ultrasonication-assisted FeCl3-catalyzed hydrolysis. Cellulose, 21(5): 3497-3506
44. Malainine M. E., Mahrouz M., Dufresne A. (2005) Thermoplastic nanocomposites based on cellulose microfibrils from Opuntia ficus-indica parenchyma cell. Composites Science and Technology, 65(10): 1520-1526
45. Man Z., Muhammad N., Sarwono A., Bustam M.A., Kumar M.V., Rafiq S. (2011) Preparation of cellulose nanocrystals using an ionic liquid. Journal of Polymers and the Environment, 19(3): 726-731
46. Moser C., Backlund H., Drenth L., Henriksson G., Lindstrom M.E. (2018) Xyloglucan adsorption for measuring the specific surface area on various never-dried cellulose nanofibers. Nordic Pulp & Paper Research Journal, 33(2): 186-193
47. Nazari B., Kumar V., Bousfield D. W., Toivakka M. (2016) Rheology of cellulose nanofibers suspensions: Boundary driven flow. Journal of Rheology, 60(6): 1151-1159
48. Nickerson R. F., Habrle J. A. (1947) Cellulose intercrystalline structure. Industrial & Engineering Chemistry, 39(11): 1507-1512
49. Ninomiya K., Abe M., Tsukegi T., Kuroda K., Tsuge Y., Ogino C., Taki K., Taima T., Saito J., Kimizu M., Uzawa K., Takahashi K. (2018) Lignocellulose nanofibers prepared by ionic liquid pretreatment and subsequent mechanical nanofibrillation of bagasse powder: Application to esterified bagasse/polypropylene composites. Carbohydrate Polymers, 182: 8-14
50. Nuruddin Md., Hosur M., Uddin Md.J., Baah D., Jeelani S. (2016) A novel approach for extracting cellulose nanofibers from lignocellulosic biomass by ball milling combined with chemical treatment. Journal of Applied Polymer Science, 133(9): 42990
51. Olszewska A., Eronen P., Johansson L.-S., Malho J.-M., Ankerfors M., Lindstrom T., Ruokolainen J., Laine J., Osterberg M. (2011) The behaviour of cationic nanofibrillar cellulose in aqueous media. Cellulose, 18(5): 1213-1226
52. Paakko M., Ankerfors M., Kosonen H., Nykanen A., Ahola S., Osterberg M., Ruokolainen J., Laine J., Larsson P.T., Ikkala O., Lindstrom T. (2007) Enzymatic hydrolysis combined with mechanical shearing and high-pressure homogenization for nanoscale cellulose fibrils and strong gels. Biomacromolecules, 8(6): 1934-1941
53. Paakkonen T., Spiliopoulos P., Knuts A., Nieminen K., Johansson L.-S., Enqvist E., Kontturi E. (2018) From vapour to gas: optimising cellulose degradation with gaseous HCl. Reaction Chemistry & Engineering, 3(3): 312-318
54. Rosgaard L., Pedersen S., Langston J., Akerhielm D., Cherry J. R., Meyer A. S. (2007) Evaluation of minimal Trichoderma reesei cellulase mixtures on differently pretreated barley straw substrates. Biotechnology Progress, 23(6): 1270-1276
55. Saito T., Nishiyama Y., Putaux J. L., Vignon M., Isogai A. (2006) Homogeneous suspensions of individualized microfibrils from TEMPO-catalyzed oxidation of native cellulose. Biomacromolecules, 7(6): 1687-1691
56. Saito T., Hirota M., Tamura N., Kimura S., Fukuzumi H., Heux L., Isogai A. (2009) Individualization of nano-sized plant cellulose fibrils by direct surface carboxylation using TEMPO catalyst under neutral condition. Biomacromolecules, 10(7): 1992-1996
57. Schenker M., Schoelkopf J., Gane P., Mangin P (2019) Rheology of microfibrillated cellulose (MFC) suspensions: influence of the degree of fibrillation and residual fibre content on flow and viscoelastic properties. Cellulose, 26(2): 845-860
58. Shafiei-Sabet S., Hamad W.Y., Hatzikiriakos S.G. (2012) Rheology of nanocrystalline cellulose aqueous suspensions. Langmuir, 28(49): 17124-17133
59. Sheltami R.M., Kargarzadeh H., Abdullah I., Ahmad I. (2017) Thermal properties of cellulose nanocomposites. Handbook of nanocellulose and cellulose nanocomposites. Vol. 2. Kargarzadeh H., Ahmad I., Thomas S., Dufresne A. (eds.) Weinheim, Wiley VCH Verlag GmbH & Co. KGaA, p. 523-552
60. Siqueira G., Abdillahi H., Bras J., Dufresne A. (2010) High reinforcing capability cellulose nanocrystals extracted from Syngonanthus nitens (Capim Dourado). Cellulose, 17(2): 289-298
61. Sirvio J.A., Visanko M., Liimatainen H. (2016) Acidic deep eutectic solvents as hydrolytic media for cellulose nanocrystal production. Biomacromolecules, 17(9): 3025-3032
62. Taniguchi T., Okamura K. (1998) New films produced from microfibrillated natural fibres. Polymer International, 47(3): 291-294
63. Tingaut P., Eyholzer C., Zimmermann T. (2011) Functional polymer nanocomposite materials from microfibrillated cellulose. Advances in nanocomposite technology. Hashim A. (ed.) InTech, p. 319-334
64. Tsuboi K., Yokota S., Kondo T (2014) Difference between bamboo- and wood-derived cellulose nanofibers prepared by the aqueous counter collision method. Nordic Pulp & Paper Research Journal, 29(1): 69-76
65. Turbak A.F., Snyder F.W., Sandberg K.R. (1983) Microfibrillated cellulose, a new cellulose product: properties, uses, and commercial potential. Journal of Applied Polymer Science: Applied Polymer Symposium, 37: 815-827
66. Urena-Benavides E.E., Ao G., Davis V.A., Kitchens C.L. (2011) Rheology and phase behavior of lyotropic cellulose nanocrystal suspensions. Macromolecules, 44(22): 8990-8998
67. Wagberg L., Decher G., Norgren M., Lindstrom T., Ankerfors M., Axnas K. (2008) The build-up of polyelectrolyte multilayers of microfibrillated cellulose and cationic polyelectrolytes. Langmuir, 24(3): 784-795
68. Wang J., Gardner D.J., Stark N.M., Bousfield D.W., Tajvidi M., Cai Z. (2018) Moisture and oxygen barrier properties of cellulose nanomaterial-based films. ACS Sustainable Chemistry & Engineering, 6(1): 49-70
69. Yang H., Alam M.N., van de Ven T.G.M. (2013) Highly charged nanocrystalline cellulose and dicarboxylated cellulose from periodate and chlorite oxidized cellulose fibers. Cellulose, 20(4): 1865-1875
70. Yang Q., Saito T., Berglund L.A., Isogai A. (2015) Cellulose nanofibrils improve the properties of all-cellulose composites by the nano-reinforcement mechanism and nanofibril-induced crystallization. Nanoscale, 7(42): 17957-17963
71. Yao K., Meng Q., Bulone V., Zhou Q. (2017) Flexible and responsive chiral nematic cellulose nanocrystal/poly(ethylene glycol) composite films with uniform and tunable structural color. Advanced Materials, 29(28): 1701323
72. Zhang L., Tsuzuki T., Wang X. (2015) Preparation of cellulose nanofiber from softwood pulp by ball milling. Cellulose, 22(3): 1729-1741
73. Zuluaga R., Putaux J.-L., Restrepo A., Mondragon I., Ganan P (2007) Cellulose microfibrils from banana farming residues: isolation and characterization. Cellulose, 14(6): 585-592
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