Page 293 - Biodegradable Polyesters
P. 293
References 271
82. Dell’Erba, R., Groeninckx, G., Maglio, 101. Bartczak, Z., Galeski, A., Kowalczuk,
G., Malinconico, M., and Migliozzi, A. M., Sobota, M., and Malinowski, R.
(2001) Polymer, 42, 7831–7840. (2013) Eur.Polym.J., 49, 3630–3641.
83. Maglio, G., Malinconico, M., Migliozzi, 102. Ma, P., Spoelstra, A.B., Schmit, P., and
A., and Groeninckx, G. (2004) Macro- Lemstra, P.J. (2013) Eur.Polym.J., 49,
mol. Chem. Phys., 205, 946–950. 1523–1531.
84. Chavalitpanya, K. and Phattanarudee, S. 103. Li, Y. and Shimizu, H. (2007) Macro-
(2013) Energy Procedia, 34, 542–548. mol. Biosci., 7, 921–928.
85. Na,Y.-H.,He, Y.,Shuai,X., Kikkawa, Y., 104. Han, J.-J. and Huang, H.-X. (2011) J.
Doi, Y., and Inoue, Y. (2002) Biomacro- Appl. Polym. Sci., 120, 3217–3223.
molecules, 3, 1179–1186. 105. Ojijo, V., Sinha Ray, S., and Sadiku, R.
86. Wang, L., Ma, W., Gross, R.A., and (2013) ACS Appl. Mater. Interfaces, 5,
McCarthy, S.P. (1998) Polym. Degrad. 4266–4276.
Stab., 59, 161–168. 106. Oyama, H.T. (2009) Polymer, 50,
87. Semba, T., Kitagawa, K., Ishiaku, U.S., 747–751.
and Hamada, H. (2006) J. Appl. Polym. 107. Wang, R., Wang, S., Zhang, Y., Wan, C.,
Sci., 101, 1816–1825. and Ma, P. (2009) Polym. Eng. Sci., 49,
88. Semba, T., Kitagawa, K., Ishiaku, U.S., 26–33.
Kotaki, M., and Hamada, H. (2007) J. 108. Jiang, L., Wolcott, M.P., and Zhang, J.
Appl. Polym. Sci., 103, 1066–1074.
(2005) Biomacromolecules, 7, 199–207.
89. Harada, M., Iida, K., Okamoto, K.,
109. Anderson, K.S. and Hillmyer, M.A.
Hayashi, H., and Hirano, K. (2008) (2004) Polymer, 45, 8809–8823.
Polym. Eng. Sci., 48, 1359–1368. 110. Wang, X., Zhuang, Y., and Dong,
90. Tams, J., Joziasse, C.A.P., Bos, R.R.M.,
L. (2013) J. Appl. Polym. Sci., 127,
Rozema, F.R., Grijpma, D.W., and
471–477.
Pennings, A.J. (1995) Biomaterials, 16,
111. Ma, P., Hristova-Bogaerds, D.G.,
1409–1415.
Goossens, J.G.P., Spoelstra, A.B., Zhang,
91. Odent, J., Raquez, J.-M., Duquesne, E.,
Y., and Lemstra, P.J. (2012) Eur. Polym.
and Dubois, P. (2012) Eur. Polym. J., 48,
J., 48, 146–154.
331–340.
92. Donald, A.M. and Kramer, E.J. (1982) J. 112. Kang, H., Qiao, B., Wang, R., Wang, Z.,
Appl. Polym. Sci., 27, 3729–3741. Zhang, L., Ma, J., and Coates, P. (2013)
93. van der Wal, A. and Gaymans, R.J. Polymer, 54, 2450–2458.
113. Liu, H.,Song, W.,Chen, F.,Guo,L.,
(1999) Polymer, 40, 6067–6075.
and Zhang, J. (2011) Macromolecules,
94. Todo, M., Park, S.D., Takayama, T., and
44, 1513–1522.
Arakawa, K. (2007) Eng. Fract. Mech.,
74, 1872–1883. 114. Liu, H.,Chen, F.,Liu,B., Estep, G.,and
95. Mahajan, D.K. and Hartmaier, A. Zhang, J. (2010) Macromolecules, 43,
(2012) Phys. Rev. E, 86, 021802. 6058–6066.
96. Noda, I., Satkowski, M.M., Dowrey, 115. Taib, R.M., Ghaleb, Z.A., and
A.E., and Marcott, C. (2004) Macromol. Mohd Ishak, Z.A. (2012) J. Appl. Polym.
Biosci., 4, 269–275. Sci., 123, 2715–2725.
97. Meng,B., Deng,J., Liu, Q.,Wu, Z., 116. Afrifah, K.A. and Matuana, L.M. (2010)
and Yang, W. (2012) Eur.Polym.J., 48, Macromol. Mater. Eng., 295, 802–811.
127–135. 117. Han, L., Han, C., and Dong, L. (2013)
98. Petchwattana, N., Covavisaruch, S., and Polym. Compos., 34, 122–130.
Euapanthasate, N. (2012) Mater. Sci. 118. NatureWorks (2007) Technol-
Eng., A, 532, 64–70. ogy Focus Report: Blends of
99. Ito, M., Abe, S., and Ishikawa, M. PLA with Other Thermoplastics,
(2010) J. Appl. Polym. Sci., 115, http://www.natureworksllc.com/
1454–1460. ∼/media/technical_resources/properties_
100. Kowalczyk,M.and Piorkowska, documents/propertiesdocument_blends-
E. (2012) J. Appl. Polym. Sci., 124, of-ingeo-with-other-thermoplastics_
4579–4589. pdf.pdf (accessed 03 October 2013).