Chemistry Reference
In-Depth Information
Colloids and Surfaces A: Physicochem.
Eng. Aspects , 256 , 111-115.
90. Huang, M.F., Yu, J.G., and. Ma, X.F. (2006).
High mechanical performance MMT-urea
and Formamideplasticized thermoplastic
cornstarch biodegradable nanocomposites.
Carbohyd. Polym. , 63 , 393-399.
91. Kampeerapappun, P., Aht-Ong, D., Pentra-
koon, D., and Srikulkit, K. (2007). Prepa-
ration of cassava starch/montmorillonite
composite film. Carbohyd. Polym. , 67 ,
155-163.
92. Khanna, P.K., Singh, N., Charan, S., Sub-
barao, V.V.V.S., Gokhale, R., and Mulik,
U.P. (2005). Synthesis and characterization
of Ag/PVA nanocomposite by chemical re-
duction method. Mater. Chem. Phys. , 93 ,
117-121.
93. Kozak, M. and Domka, L.J. (2004). Adsorp-
tion of the quaternary ammonium salts on
montmorillonite. J.Phys. Chem. Solids ., 65 ,
441-445.
94. Mangiacapra, P., Gorrasi, G., Sorrentino,
A., and Vittoria, V. (2006). Biodegradable
nanocomposites obtained by ball milling
of pectin and montmorillonites. Carbohyd.
Polym. , 64 , 516-523.
95. Mano, J.F., Koniarova, D., and Reis, R.L.
(2003). Thermal properties of thermoplastic
starch/synthetic polymer blends with poten-
tial biomedical applicability. J. Mater. Sci.:
Mater. Med. , 14 , 127-135.
96. Patakfalvi, R., Oszko, A., and Dékány, I.
(2003). Synthesis and characterization of
silver nanoparticle/kaolinite composites.
Coll. Surf. A. , 220 , 45-54.
97. Prasad, V., Souza, C.D., Yadav, D., Shaikh,
A.J., and Vigneshwaran, N. (2006). Spec-
troscopic characterization of zinc oxide
nanorods synthesized by solid-state reac-
tion. Spectrochim. Acta A. , 65 , 173-178.
98. Raveendran, P., Fu, J., and Wallen, S. L.
(2003). Completely “Green” synthesis and
stabilization of metal nanoparticles. J. Am.
Chem. Soc ., 125 , 13940-13941.
99. Temgire, M.K. and Joshi, S.S. (2004). Opti-
cal and structural studies of silver nanopar-
ticles. Radiat. Phys.Chem. , 71 , 1039-1044.
100. Twu, Y.K., Chen, Y.W., and Shih, C.M.
(2008). Preparation of silver nanoparticles
using chitosan suspensions. Powder Tech-
nol. , 185 , 251-257.
101. Yin, H., Yamamoto, T., Wada, Y., and
Yanagida, S. (2004). Large-scale and size-
controlled synthesis of silver nanoparticles
under microwave irradiation. Mater. Chem.
Phys. , 83 , 66-70.
102. Zhao, X.P., Wang, B.X., and Li, J. (2008).
Synthesis and electrorheological activity of
a modified kaolinite/carboxymethyl starch
hybrid nanocomposite. J. Appl. Polym. Sci. ,
108 , 2833-2839.
103. Yu, L., Dean, K., and Li, L. (2006). Polymer
blends and composites from renewable re-
sources. Prog. Polym. Sci. , 31 , 576-602.
104. de Menezes, A.J., Pasquini, D., Curvelo,
A.A.S., and Gandini, A. (2007). Novel ther-
moplastic materials based on the outer-shell
oxypropylation of corn starch granules. Bio-
macromolecules , 8 , 2047-2050.
105. Mohanty, A.K., Misra, M., and Hinrich-
sen, G. (2000). Biofibres, biodegradable
polymers and biocomposites: An overview.
Macromol. Mater. Eng. , 276-277 , 1-24.
106. Mathew, A.P. and Dufresne, A. (2002). Mor-
phological investigation of nanocomposites
from sorbitol plasticized starch and tunicin
whiskers. Biomacromolecules , 3 , 609-617.
107. Tábi, T. and Kovács, J.G. (2007). Exami-
nation of injection moulded thermoplastic
maize starch. Express Polym. Lett. , 1 , 804-
809.
108. Santayanon, R. and Wootthikanokkhan, J.
(2003). Modification of cassava starch by
using propionic anhydride and properties of
the starch-blended polyester polyurethane.
Carbohydr. Polym ., 51 , 17-24.
108. Cao, X., Chang, P.R., and Huneault, M.A.
(2008). Preparation and properties of
plasticized starch modified with poly(ε-
caprolactone) based waterborne polyure-
thane. Carbohydr. Polym. , 71 , 119-125.
109. Cao, X., Zhang, L., Huang, J., Yang, G.,
and Wang, Y. (2003). Structure-properties
relationship of starch/waterborne polyure-
thane composites. J. Appl. Polym. Sci. , 90 ,
3325-3332.
110. Chen, Y., Cao, X., Chang, P.R., and Hu-
neault, M.A. (2008). Comparative study on
the films of poly(vinyl alcohol)/pea starch
 
Search WWH ::




Custom Search