Preparation and graft-copolymerization of hydrogenated natural rubber in latex stage

ABSTRACT Preparation and graft‐copolymerization of hydrogenated natural rubber are performed in latex stage after removal of proteins from the rubber with urea and surfactant. Hydrogenation of deproteinized natural rubber (DPNR) latex is carried out with palladium catalyst under hydrogen atmosphere....

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Published inJournal of applied polymer science Vol. 132; no. 34; pp. np - n/a
Main Authors Ha, Nguyen Thu, Kaneda, Keisuke, Naitoh, Yoshitaka, Fukuhara, Lina, Kosugi, Kenichiro, Kawahara, Seiichi
Format Journal Article
LanguageEnglish
Published Hoboken Blackwell Publishing Ltd 10.09.2015
Wiley Subscription Services, Inc
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ISSN0021-8995
1097-4628
DOI10.1002/app.42435

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Summary:ABSTRACT Preparation and graft‐copolymerization of hydrogenated natural rubber are performed in latex stage after removal of proteins from the rubber with urea and surfactant. Hydrogenation of deproteinized natural rubber (DPNR) latex is carried out with palladium catalyst under hydrogen atmosphere. The hydrogenated DPNR (HDPNR) is crosslinked with a peroxide followed by graft‐copolymerization of styrene (Sty) and acrylonitrile (AN) in latex stage in order to prepare a graft‐copolymer of crosslinked HDPNR with poly(Sty‐co‐AN) (HDPNR‐graft‐PSAN). Characterization of the products is performed by nuclear magnetic resonance spectroscopy. The conversion of hydrogenation is investigated with respect to the catalyst feed, acidity (pH), and dry rubber content. In the resulting HDPNR‐graft‐PSAN, mole fraction of AN and Sty is 1.4 and 5.8 mol %, respectively. The graft‐copolymer is used to improve properties of PSAN as an impact modifier. The Charpy impact strength of crosslinked HDPNR‐graft‐PSAN/PSAN is about eight times as high as that of PSAN. © 2015 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2015, 132, 42435.
Bibliography:ArticleID:APP42435
istex:8805446AF0C0005097E843A4B55CD07F3E4D9F53
ark:/67375/WNG-T28QQXSD-F
Challenging Exploratory Research and Grant-in-Aid - No. 25288098
Grant-in-Aid - No. 26620176
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ISSN:0021-8995
1097-4628
DOI:10.1002/app.42435