Tailored Ceo2 Nanoparticles Surface in Free Radical Bulk Polymerization of Methyl Methacrylate

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Date

2013

Authors

Demir, Mustafa Muammer

Journal Title

Journal ISSN

Volume Title

Publisher

American Chemical Society

Open Access Color

BRONZE

Green Open Access

Yes

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0

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2

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No
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Average
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Average
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Abstract

Polymerization of monomer/nanoparticle dispersion, namely in situ polymerization, has been frequently used for the fabrication of polymer nanocomposites. However, the interference of nanoparticle surface with polymerization in the course of composite formation has been tacitly neglected. In this work, surface-functionalized ceria nanoparticles were prepared using various capping agents: 3-(mercaptopropyl) trimethoxy silane, thioglycolic acid, 3-mercaptopropionic acid, and hexadecyltrimethyl ammonium bromide. Both in situ and ex situ approaches were applied for surface functionalization. The particles were dispersed into methyl methacrylate and free radical polymerization was carried out. The process of nanocomposite formation was examined in terms of conversion, molecular weight, and molecular weight distribution. The polymerization responded merely to the in situ functionalized particles. Regardless of the capping agents used, the particles function as a retarder and inhibitor. Their interaction with polymerization medium showed many complexities such that molecular weight was found to be strongly dependent on the capping agent employed.

Description

Keywords

Acrylic monomers, Free radical polymerization, Molecular weight distribution, Esters, Nanocomposites, Free radical polymerization, Esters, Molecular weight distribution, Acrylic monomers, Nanocomposites

Fields of Science

02 engineering and technology, 0210 nano-technology, 01 natural sciences, 0104 chemical sciences

Citation

Tunusoğlu, Ö., and Demir, M. M. (2013). Tailored CeO2 nanoparticles surface in free radical bulk polymerization of methyl methacrylate. Industrial and Engineering Chemistry Research, 52(37), 13401-13410. doi:10.1021/ie401872y

WoS Q

Q2

Scopus Q

Q2
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OpenCitations Citation Count
5

Source

Industrial and Engineering Chemistry Research

Volume

52

Issue

37

Start Page

13401

End Page

13410
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CrossRef : 5

Scopus : 6

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Mendeley Readers : 12

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6

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5

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Page Views

881

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Downloads

460

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