TY - JOUR
T1 - Effect of activation-deactivation on microstructure of the product of atom transfer radical copolymerization
AU - Guo, Yumei
AU - Xu, Fengling
AU - Xie, Meiran
AU - He, Xiaohua
AU - Song, Chunmei
AU - Zhang, Yiqun
PY - 2007/8
Y1 - 2007/8
N2 - A new tetra polymerization model was proposed to handling the atom transfer copolymerization as well as the microstructure of its products. According to this model, computer simulation has been carried on to produce this ATRcP propagation including activation-deactivation process. After filtering two "monomers" which represent the dormant state of activate units, the chains' microstructure was found to be the same as that of the stationary FRcP, and all the values of structure parameters had nothing to do with the dormancy and reactivation probabilities. This conclusion can be supported by the existing experimental results. It is concluded that under stationary conditions, the copolymer's microstructure of the ATRcP is the same as that of the FRcP product, this structure includes the average segment length, composition, triad sequence concentration and segment length distribution.
AB - A new tetra polymerization model was proposed to handling the atom transfer copolymerization as well as the microstructure of its products. According to this model, computer simulation has been carried on to produce this ATRcP propagation including activation-deactivation process. After filtering two "monomers" which represent the dormant state of activate units, the chains' microstructure was found to be the same as that of the stationary FRcP, and all the values of structure parameters had nothing to do with the dormancy and reactivation probabilities. This conclusion can be supported by the existing experimental results. It is concluded that under stationary conditions, the copolymer's microstructure of the ATRcP is the same as that of the FRcP product, this structure includes the average segment length, composition, triad sequence concentration and segment length distribution.
KW - ATRP
KW - Copolymers composition
KW - Deactivate reactions
KW - Micro-sequence
UR - https://www.scopus.com/pages/publications/37749014318
M3 - 文章
AN - SCOPUS:37749014318
SN - 1000-3304
SP - 752
EP - 756
JO - Acta Polymerica Sinica
JF - Acta Polymerica Sinica
IS - 8
ER -