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| Content Provider | Springer Nature Link |
|---|---|
| Author | Tohsan, Atitaya Kishi, Ryota Ikeda, Yuko |
| Copyright Year | 2015 |
| Abstract | Preparation and characteristics of model filler networks in nanocomposites are reported for development of rubber science. The nanocomposites were prepared via a sol–gel reaction in natural rubber (NR) latex using tetraethoxysilane followed by a peroxide cross-linking reaction in the liquid state employing a casting method. The filler network structure was formed in the NR matrix, even though the silica content was only 10 and 17 parts per one hundred rubber by weight. One of the important factors for the formation of the filler network was utilization of rubber particles in the latex as a template. Dynamic mechanical analysis revealed the significant characteristics of the filler network of silica particles in the rubber matrix: Higher and longer plateau regions of storage modulus and dissipation loss modulus in the low frequency region were observed in the in situ silica-filled nanocomposites compared with conventionally prepared nanocomposites. This was mainly ascribed to a strong filler–filler interaction. |
| Starting Page | 2083 |
| Ending Page | 2093 |
| Page Count | 11 |
| File Format | |
| ISSN | 0303402X |
| Journal | Colloid and Polymer Science |
| Volume Number | 293 |
| Issue Number | 7 |
| e-ISSN | 14351536 |
| Language | English |
| Publisher | Springer Berlin Heidelberg |
| Publisher Date | 2015-04-28 |
| Publisher Place | Berlin/Heidelberg |
| Access Restriction | One Nation One Subscription (ONOS) |
| Subject Keyword | Natural rubber latex In situ silica Filler network Peroxide cross-linking Dynamic mechanical properties Polymer Sciences Soft and Granular Matter, Complex Fluids and Microfluidics Characterization and Evaluation of Materials Physical Chemistry Food Science Nanotechnology and Microengineering |
| Content Type | Text |
| Resource Type | Article |
| Subject | Colloid and Surface Chemistry Materials Chemistry Physical and Theoretical Chemistry Polymers and Plastics |
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