TY  - JOUR
T1  - Preparation of nanocomposites based on styrene/(p-methylstyrene) and SiO2 nanoparticles, through a metallocene–MAO initiating system
AU  - Zapata, Paula A.
AU  - Zamora, Paulina
AU  - Canales, Daniel A.
AU  - Quijada, Raúl
AU  - Benavente, Rosario
AU  - Rabagliati, Franco M.
N1  - Publisher Copyright:
© 2018, Springer-Verlag GmbH Germany, part of Springer Nature.
PY  - 2019/2/6
Y1  - 2019/2/6
N2  - The preparation of nanocomposites, including styrene, tertbutylstyrene, and SiO2 nanoparticles, in toluene solution was attempted by in situ polymerization using a cyclopentadienyltitaniumtrichloride–methylaluminoxane, CpTiCl3–MAO, initiator system. SiO2 nanospheres (ca. 20 nm in diameter) were synthesized by the sol–gel method. The nanoparticles’ surface was modified with hexadecyltrimethoxysilane (Mod-SiO2Nps) in order to improve the interactions with the polymer. The polymerization activity increased as the proportion of p-methyl styrene was increased in the initial feed. With respect to the effect of the incorporation of nanoparticles in the reactions, the catalytic activity increased slightly in the presence of 5 wt% of nanospheres compared to neat copolymerization without any nanoparticles. Our studies achieved a convenient route through in situ polymerization, avoiding further treatment of the nanocomposite. The thermal stability of the PS increased with nanoparticle incorporation. The effect of SiO2-Npts on the catalyst’s activity and on the thermal properties of the resulting nanocomposites was determined.
AB  - The preparation of nanocomposites, including styrene, tertbutylstyrene, and SiO2 nanoparticles, in toluene solution was attempted by in situ polymerization using a cyclopentadienyltitaniumtrichloride–methylaluminoxane, CpTiCl3–MAO, initiator system. SiO2 nanospheres (ca. 20 nm in diameter) were synthesized by the sol–gel method. The nanoparticles’ surface was modified with hexadecyltrimethoxysilane (Mod-SiO2Nps) in order to improve the interactions with the polymer. The polymerization activity increased as the proportion of p-methyl styrene was increased in the initial feed. With respect to the effect of the incorporation of nanoparticles in the reactions, the catalytic activity increased slightly in the presence of 5 wt% of nanospheres compared to neat copolymerization without any nanoparticles. Our studies achieved a convenient route through in situ polymerization, avoiding further treatment of the nanocomposite. The thermal stability of the PS increased with nanoparticle incorporation. The effect of SiO2-Npts on the catalyst’s activity and on the thermal properties of the resulting nanocomposites was determined.
KW  - Homo- and copolymerization
KW  - In situ copolymerization
KW  - Metallocene catalyst
KW  - Nanocomposites
KW  - SiO nanospheres
UR  - http://www.scopus.com/inward/record.url?scp=85049691433&partnerID=8YFLogxK
U2  - 10.1007/s00289-018-2420-0
DO  - 10.1007/s00289-018-2420-0
M3  - Article
AN  - SCOPUS:85049691433
SN  - 0170-0839
VL  - 76
SP  - 1041
EP  - 1058
JO  - Polymer Bulletin
JF  - Polymer Bulletin
IS  - 2
ER  -