DocumentCode
109231
Title
Polymeric nanocapsules with controllable crosslinking degree via combination of surfaceinitiated atom transfer radical polymerisation and photocrosslinking techniques
Author
Peng Liu ; Bin Mu ; Pengcheng Du ; Zhilai Hong
Author_Institution
State Key Lab. of Appl. Org. Chem., Lanzhou Univ., Lanzhou, China
Volume
7
Issue
2
fYear
2013
fDate
Jun-13
Firstpage
63
Lastpage
68
Abstract
The crosslinked polystyrene nanocapsules with controllable crosslinking degree have been prepared by the ultraviolet (UV)-induced photocrosslinking of the polystyrene grafted silica nanoparticles (SN-PS), which was obtained by the surface-initiated atom transfer radical polymerisation of styrene from the modified silica nanoparticle templates, after the silica templates were etched with hydrofluoric acid. The effect of the UV-irradiating time on the inner diameter of the nanocapsules, and the degree of crosslinking and the thickness of the shells was investigated. The dynamic light scattering results showed that the degree of crosslinking of the obtained nanocapsules increased with the prolongation of the UV-irradiation time, therefore the inner diameter of the nanocapsules increased. However, the percentage of grafting of the crosslinked polymer shells decreased with increasing the UV-irradiation time because of the photodecomposition of the polystyrene grafted during the UV-irradiated crosslinking process, according to the thermogravimetric analysis.
Keywords
etching; free radical reactions; light scattering; nanofabrication; nanomedicine; nanoparticles; photochemistry; photodissociation; polymer blends; polymerisation; silicon compounds; thermal analysis; ultraviolet radiation effects; SiO2; UV-irradiation time; crosslinked polymer shell grafting; crosslinked polystyrene nanocapsules; dynamic light scattering; etching; hydrofluoric acid; photodecomposition; polymeric nanocapsules; polystyrene grafted silica nanoparticles; shell thickness; surface-initiated atom transfer radical polymerisation; thermogravimetric analysis; ultraviolet-induced photocrosslinking;
fLanguage
English
Journal_Title
Nanobiotechnology, IET
Publisher
iet
ISSN
1751-8741
Type
jour
DOI
10.1049/iet-nbt.2012.0021
Filename
6542281
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