TY - JOUR
T1 - Preparation of hyperbranched polycarbosilazane via ultraviolet initiated hydrosilylation
AU - Zhang, Guo Bin
AU - Fan, Xiao Dong
AU - Kong, Jie
AU - Liu, Yu Yang
PY - 2007/12
Y1 - 2007/12
N2 - Hyperbranched polycarbosilazane P1 was successfully prepared from AB4 type monomer bis(N, N-diallylamino) methylsilane via fast hydrosilylation initiated by ultraviolet (UV) irradiation, with bis(acetylacet-onato) platinum (II) as the catalyst. For comparison, hyperbranched polycarbosilazane P2 was also prepared with the same monomer via heating-initiated polymerization at 80°C with Karstedt's catalyst. The structures of the resulting polymers were well characterized by FTIR, 1H NMR, 13C NMR, 29Si NMR and size exclusion chromatography/multi-angle laser light scattering (SEC/MALLS) technology. By IR monitoring, it was found that polyhydrosilylation initiated by UV irradiation was much faster than that initiated by heating. NMR analyses confirmed that the resulting polymer possessed a hyperbranched architecture, indicating that a-hydrosilylation may mainly occur during UV-initiated polymerization. Degree of branching (DB) and average number of branches (ANB) of P1 were determined via Si NMR and were found to be 0.46 and 0.53, which were close to the theoretical values, respectively. And the weight average molecular weight, polydispersity index and exponent for Mark-Houwink equation of P1 were determined to be 12500 g/mol, 2.1 and 0.44, respectively, which were similar to those of P2.
AB - Hyperbranched polycarbosilazane P1 was successfully prepared from AB4 type monomer bis(N, N-diallylamino) methylsilane via fast hydrosilylation initiated by ultraviolet (UV) irradiation, with bis(acetylacet-onato) platinum (II) as the catalyst. For comparison, hyperbranched polycarbosilazane P2 was also prepared with the same monomer via heating-initiated polymerization at 80°C with Karstedt's catalyst. The structures of the resulting polymers were well characterized by FTIR, 1H NMR, 13C NMR, 29Si NMR and size exclusion chromatography/multi-angle laser light scattering (SEC/MALLS) technology. By IR monitoring, it was found that polyhydrosilylation initiated by UV irradiation was much faster than that initiated by heating. NMR analyses confirmed that the resulting polymer possessed a hyperbranched architecture, indicating that a-hydrosilylation may mainly occur during UV-initiated polymerization. Degree of branching (DB) and average number of branches (ANB) of P1 were determined via Si NMR and were found to be 0.46 and 0.53, which were close to the theoretical values, respectively. And the weight average molecular weight, polydispersity index and exponent for Mark-Houwink equation of P1 were determined to be 12500 g/mol, 2.1 and 0.44, respectively, which were similar to those of P2.
KW - Hydrosilylation addition reaction
KW - Hyperbranching
KW - Polycarbosilazane
KW - Ultraviolet
UR - http://www.scopus.com/inward/record.url?scp=37749004826&partnerID=8YFLogxK
M3 - 文章
AN - SCOPUS:37749004826
SN - 0251-0790
VL - 28
SP - 2403
EP - 2407
JO - Gaodeng Xuexiao Huaxue Xuebao/Chemical Journal of Chinese Universities
JF - Gaodeng Xuexiao Huaxue Xuebao/Chemical Journal of Chinese Universities
IS - 12
ER -