Civil Engineering Reference
In-Depth Information
66. J. Yang, D. Sun, J. Li, X. Yang, J. Yu, Q. Hao, W. Liu, J. Liu, Z. Zou, and J. Gub, In situ deposi-
tion of platinum nanoparticles on bacterial cellulose membranes and evaluation of PEM
fuel cell performance. Electrochim. Acta , 54 , 6300 - 6305 ( 2009 ).
67. M. Nogi, K. Handa, A. N. Nakagaito, and H. Yano, Optically transparent bionanoi ber com-
posites with low sensitivity to refractive index of the polymer matrix. Appl. Phys. Lett . 87 ,
243110 1 - 3 , ( 2005 ).
68. M. Nogi, S. Ifuku, K. Abe, K. Handa, A. N. Nakagaito, and H. Yano, Fiber-content depen-
dency of the optical transparency and thermal expansion of bacterial nanoi ber reinforced
composites . Appl. Phys. Lett . 88 , 133124 1 - 3 ( 2006 ).
69. H. Yano , J. Sugiyamal , A. N. Nakagaito , M. Nogi , T. Matsuura , M. Hikita , and K. Handa ,
Optically transparent composites reinforced with networks of bacterial nanoi bers. Adv.
Mater . 17 , 153 - 155 ( 2005 ).
70. M. Nogi, and H. Yano, Transparent nanocomposites based on cellulose produced by bacte-
ria of er potential innovation in the electronics device industry. Adv. Mater . 30 , 1849 - 1852
( 2008 ).
71. S. Ifuku , M. Nogi , K. Abe , K. Handa , F. Nakatsubo , and H. Yano , Surface modii cation of
bacterial cellulose nanoi bers for property enhancement of optically transparent compos-
ites: Dependence on acetyl-group DS. Biomacromolecules 8 , 1973 - 1978 ( 2007 ).
72. R. Jung, H. S. Kim, Y. Kim, S. M. Kwon, H. S. Lee, and H. J. Jin, Electrically conductive
transparent papers using multiwalled carbon nanotubes. J. Polym. Sci. B Polym. Phys . 46 ,
1235 - 1242 ( 2008 ).
73. Y. Kim, H. S. Kim, H. Bak, Y. S. Yun, S. Y. Cho, and H. J. Jin, Transparent conducting i lms
based on nanoi brous polymeric membranes and single-walled carbon nanotubes. J. Appl.
Polym. Sci . 114 , 2864 - 2872 ( 2009 ).
74. D. T. B. De Salvi, H. S. Barud, J. M. A. Caiut, Y. Messaddeq, and S. J. L. Ribeiro, Self-supported
bacterial cellulose/boehmite organic-inorganic hybrid i lms. J. Sol-Gel Sci. Technol . 63 ,
211 - 218 ( 2012 ).
75. H. S. Barud, J. M. A. Caiut, J. Dexpert-Ghys, Y. Messaddeq, and S. J. L. Ribeiro, Transparent
bacterial cellulose-boehmite-epoxi-siloxane nanocomposites. Composites A 43 , 973 - 977
( 2012 ).
76. S. C. M. Fernandes, L. Oliveira, C. S. R. Freire, A. J. D. Silvestre, C. P. Neto, A. Gandini, and
J. Desbrieres, Novel transparent nanocomposite i lms based on chitosan and bacterial cel-
lulose . Green Chem . 11 , 2023 - 2029 ( 2009 ).
77. Y. Kim, R. Jung, H. S. Kim, and H. J. Jin, Transparent nanocomposites prepared by incor-
porating microbial nanoi brils into poly (L-lactic acid). Curr. Appl. Phys . 9 , S69 - S71 ( 2009 ).
78. S. Gea, E. Bilotti, C. T. Reynolds, N. Soykeabkeaw, and T. Peijs, Bacterial cellulose-poly
(vinyl alcohol) nanocomposites prepared by an in-situ process. Mater. Lett . 64 , 901 - 904
( 2010 ).
Search WWH ::




Custom Search