Chemistry Reference
In-Depth Information
16 F. Deng, K. S. Bisht, R. A. Gross and D. L. Kaplan, Macromolecules, 1999, 32,
5159.
17 P. V. Persson, J. Schroeder, K. Wickholm, E. Hedenstroem and T. Iversen,
Macromolecules, 2004, 37, 5889.
18 A. C. Albertsson and I. K. Varma, Biomacromolecules, 2003, 4, 1466.
19 S. Matsumura, K. Mabuchi and K. Toshima, Macromol. Rapid Commun., 1997,
18, 477.
20 S. Matsumura, K. Tsukada and K. Toshima, Int J Biol Macromol, 1999, 25, 161.
21 D. Bourissou, S. Moebs-Sanchez and B. Martin-Vaca, C. R. Chim., 2007, 10,
775.
22 M. Fujioka, N. Hosoda, S. Nishiyama, H. Noguchi, A. Shoji, D. S. Kumar,
K. Katsuraya, S. Ishii and Y. Yoshida, Sen'i Gakkaishi, 2006, 62, 63.
23 S. Kobayashi and A. Makino, Chem. Rev., 2009, 109, 5288.
24 The number average molecular weight is given by M n = SN i M i /SN i , while the
weight average molecular weight is given by M w = SN i M i 2 /SN i M i . In these
equations, Ni is the number of molecules of weight Mi. The dispersity cor-
responds to the ratio between the weight-average molecular weight and the
number-average molecular weight: Ð M = M w /M n . The number average degree
of polymerization corresponds to the ratio between the number-average
molecular weight and the molecular weight of the monomer: DP n = M n /
M monomer ).
25 Y. Miao, C. Rousseau, A. Mortreux, P. Martin and P. Zinck, Polymer, 2011, 52,
5018.
26 Y. Miao, Y. Phuphuak, C. Rousseau, T. Bousquet, A. Mortreux, S.
Chirachanchai and P. Zinck, J. Polym. Sci., Part A: Polym. Chem., 2013, 51,
2279.
27 Y. Takashima, M. Osaki and A. Harada, J. Am. Chem. Soc., 2004, 126, 13588.
28 M. Osaki, Y. Takashima, H. Yamaguchi and A. Harada, Macromolecules, 2007,
40, 3154.
29 M. Osaki, Y. Takashima, H. Yamagushi and A. Harada, Kobunshi Ronbunshu,
2007, 64, 607.
30 A. Harada, M. Osaki, Y. Takashima and H. Yamagushi, Acc. Chem. Res., 2008,
41, 1143.
31 Y. Takashima and A. Harada, J. Synth. Org. Chem Jpn., 2013, 71, 503.
32 Y. Takashima, M. Osaki, Y. Ishimaru, H. Yamaguchi and A. Harada, Angew.
Chem. Int. Ed., 2011, 50, 7524.
33 J. Shen, A. Hao, G. Du, H. Zhang and H. Sun, Carbohydr. Res., 2008, 343, 2517.
34 M. Mooguee, Y. Omidi and S. Davaran, J. Pharm. Sci., 2010, 99, 3389.
35 X. Li, Y. Zhu, J. Ling and Z. Shen, Macromol. Rapid Commun., 2012, 33, 1008.
36 J. Hafr´n and A. C´rdova, Macromol. Rapid Commun, 2005, 26, 82.
37 M. Labet and W. Thielemans, Polymer Chemistry, 2010, 3, 679.
38 X. Sui, J. Yuan, M. Zhou, J. Zhang, H. Yang, W. Yuan, Y. Wei and C. Pan,
Biomacromolecules, 2008, 9, 2615.
39 H. Dong, Q. Xu, Y. Li, S. Mo, S. Cai and L. Liu, Colloids Surf., B, 2008, 66, 26.
40 Y. Song, L. Zhang, W. Gan, J. Zhou and L. Zhang, Colloids Surf., B, 2011, 83,
313.
41 Y. Guo, X. Wang, D. Li, H. Du, X. Wang and R. Sun, Polym. Bull., 2012, 69,
389.
42 Y. Guo, X. Wang, X. Shu, Z. Shen and R.-C. Sun, J. Agric. Food Chem., 2012, 60,
3900.
43 Y. Guo, X. Wang, Z. Shen, X. Shu and R. Sun, Carbohydrate Polym.,2013,92,77.
44 L. Najemi, T. Jeanmaire, A. Zerroukhi and M. Raihane, Starch - St ¨ rke, 2010,
62, 147.
 
Search WWH ::




Custom Search