# PHASE TRANSFER CATALYZED POLYMERIZATION OF STYRENE AND GRAFT COPOLYMERIZATION OF STYRENE ONTO GELATIN

> Title: PHASE TRANSFER CATALYZED POLYMERIZATION OF STYRENE AND GRAFT COPOLYMERIZATION OF STYRENE ONTO GELATIN Page Range: p.111-122 Author(s): Inderjeet Kaur A; Deepika Khanna N File size: Download the pdf (subscribers only) Buy the pdf (non-subscribers) Journal: Polymers and Polymer Composites Issue Year:...

Canonical URL: https://polymerjournals.com/phase-transfer-catalyzed-polymerization-of-styrene-and-graft-copolymerization-of-styrene-onto-gelatin/
Published: 2013-02-01T00:00:00+00:00
Categories: Polymers and Polymer Composites

**Title: PHASE TRANSFER CATALYZED POLYMERIZATION OF STYRENE AND GRAFT COPOLYMERIZATION OF STYRENE ONTO GELATIN**
 Page Range: p.111-122
 Author(s): Inderjeet Kaur A; Deepika Khanna N
 File size:
 ![](http://dload.gif) [Download the pdf](http://journals.asp?Page=111&JournalDownload=ON&JournalType=ppc&JournalIssue=ppc21-2&JournalID=101832&JIP=) (subscribers only)
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 Journal: Polymers and Polymer Composites
 Issue Year: ppc
 Volume: 21
 Issue No: No.2

**Abstract**
 The use of tetrabutylammonium bromide (TBAB), as phase transfer catalyst during polymerisation of styrene in the presence of water-soluble radical initiator, potassium persulphate (KPS), and graft copolymerisation of styrene onto gelatin, a water soluble polymer, using a water-insoluble radical initiator, benzoyl peroxide (BPO), has been explored in a water-benzene biphasic system. The percentage conversion (Pc) of styrene to polystyrene and percent grafting (Pg) of styrene onto gelatin was studied as a function of various reaction parameters. Under optimum reaction conditions, maximum Pc (76%) was obtained at [KPS] = 12.9 x 10^-4 moles/L, [Sty] = 4.3 x 10^-3 moles/L, and maximum Pg (87%) was obtained at [BPO] = 4.6 x 10^-4 moles/L, [Sty] = 13.88 x 10^-3 moles/L using [PTC] = 2.89 x 10^-4 moles/L in 10 mL each of water and benzene in 120 min at 60 degrees C. The graft copolymer, Gelgpoly(Sty), was characterized by IR, Thermogravimetric Analysis, Scanning Electron Microscopy and swelling behaviour in different solvents. Metal uptake and degradation studies of the grafted sample were also carried out. The grafted sample showed maximum uptake for Cu2+ (88%), Ni2+ (80%) and Fe2+ (50%). Degradation studies of Gel-g-poly(Sty) were carried out by soil burial test and UV radiations. Photo-degradation showed better degradation (5.26% wt. loss) in 32 h of exposure to UV radiations as compared to soil burial degradation (8.46% wt. loss) in 30 days. Gelatin-styrene graft copolymers can thus be used as bio- and photo-degradable materials for environmental management. 18 Refs.

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