[1]
D. Klemm, B. Heublein, H.P. Fink, et al: Angew Chem. Int. Ed. Vol. 44 (2005), pp.2-37.
Google Scholar
[2]
T. Nishino, K. Takano and K.J. Nakamae: Polym. Sci. B Vol. 33 (1995), pp.1647-1651.
Google Scholar
[3]
M.A.S. Azizi-Samir, F. Alloin, M. Paillet, et al: Macromolecules Vol. 37 (2004), pp.4313-4316.
DOI: 10.1021/ma035939u
Google Scholar
[4]
A.N. Nakagaito and H. Yano: Appl. Phys. A: Mater. Sci. Process Vol. 80 (2005), pp.155-159.
Google Scholar
[5]
A.F. Turbak, F.W. Snyder and K.R. Sandberg: J. Appl. Polym. Sci.: Appl. Polym. Symp. Vol. 37 (1983), pp.815-827.
Google Scholar
[6]
F.W. Herrick, R.L. Casebier, J.K. Hamilton, et al: J. Appl. Polym. Sci.: Appl. Polym. Symp. Vol. 37 (1983), pp.797-813.
Google Scholar
[7]
X.S. Huang and A. Netravali: Compos. Sci. Technol. Vol. 69 (2009), pp.1009-1015.
Google Scholar
[8]
Y. Habibi, M. Mahrouz and M.R. Vignon: Food Chem. Vol. 115 (2009), pp.423-429.
Google Scholar
[9]
J. Leitner, B. Hinterstoisser, M. Wastyn, et al: Cellulose Vol. 14 (2007), pp.419-425.
Google Scholar
[10]
M.J. John and S. Thomas: Carbohyd. Polym. Vol. 71 (2008), pp.343-364.
Google Scholar
[11]
A. Chakraborty, M. Sain and M. Kortschot: Holzforschung Vol. 59 (2005), pp.102-107.
Google Scholar
[12]
S. Janardhnan and M.M. Sain: BioResources Vol. 1 (2006), pp.176-188.
Google Scholar
[13]
A.N. Nakagaito and H. Yano: Appl. Phys. A Vol. 78 (2004), pp.547-552.
Google Scholar
[14]
M. Pääkkö, M. Ankerfors, H. Kosonen , et al: Biomacromolecules Vol. 8 (2007), p.1934-(1941).
Google Scholar
[15]
J.C. Roux and T.L. Mayade: Powder Technol. Vol. 105, (1999), pp.237-242.
Google Scholar
[16]
S. Kamel: Kamel-eXPRESS Polymer Letters Vol. 1 (2007), pp.546-575.
Google Scholar
[17]
M. Henriksson, G. Henriksson, L.A. Berglund, et al: Eur. Polym. J. Vol. 43 (2007), pp.3434-3441.
Google Scholar
[18]
M. Henriksson, L.A. Berglund, P. Isaksson, et al: Biomacromolecules Vol. 9 (2008), pp.1579-1585.
Google Scholar