Title :
Preparation of colloid microspheres of SiO2/Polystyrene without a coupling agent via soap-free emulsion polymerization
Author :
Chen, Jin-qing ; Li, Joshua Qingsong ; Lv, Hong-ling
Author_Institution :
State Key Lab. of Heavy oil, China Univ. of Pet., Qingdao, China
Abstract :
The colloid microspheres of SiO2/Polystyrene without a coupling agent were prepared by soap-free emulsion polymerization. The component and microstructure of the composite particles were characterized by FT-IR and SEM technology, and the mechanism of polymerization was also investigated by the particles size and distribution using dynamic light scattering (DLS) method. The characterized results showed that polystyrene is cross-linked on the surface of SiO2 by the chemical band of Si-O groups. The structures of synthesized SiO2/Polystyrene microspheres with the diameter of 180-320 nm are formed from petal-like structure to raspberry-like structure. The mechanism of polymerization revealed that the nucleation of polystyrene deposits and forms droplets on the surface of SiO2 at the beginning of polymerization. The droplets then agglomerate and shedding form the surface of SiO2, resulting in the swell of new nucleation in suspension and a slower increase of SiO2/Polystyrene microspheres diameter during the polymerization.
Keywords :
Fourier transform spectra; colloids; crystal microstructure; drops; emulsions; infrared spectra; light scattering; nucleation; organic-inorganic hybrid materials; particle size; polymerisation; polymers; scanning electron microscopy; silicon compounds; DLS method; FT-IR; SEM technology; Si-O groups; SiO2; agglomeration; chemical band; composite particles; cross linking; droplets; dynamic light scattering; microstructure; nucleation swell; particle distribution; particle size; petal-like structure; polymerization mechanism; polystyrene deposit nucleation; raspberry-like structure; shedding; silica surface; silica-polystyrene colloid microspheres; silica-polystyrene microsphere diameter; soap-free emulsion polymerization; Couplings; Polymers; Silicon compounds; Surface morphology; Surface treatment; Suspensions; Vibrations; Colloid microspheres; Monodispersion; Polystyrene; SiO2; Soap-free emulsion polymerization;
Conference_Titel :
Consumer Electronics, Communications and Networks (CECNet), 2011 International Conference on
Conference_Location :
XianNing
Print_ISBN :
978-1-61284-458-9
DOI :
10.1109/CECNET.2011.5768452