Titre : |
In-situ modification of graphene oxide by insoluble sulfur and application for nitrole butadiene rubber |
Type de document : |
texte imprimé |
Auteurs : |
S.-B. Chen, Auteur ; T.-X. Li, Auteur ; L.-H. Wan, Auteur ; X. Huang, Auteur ; S.-W. Cai, Auteur ; Xianru He, Auteur |
Année de publication : |
2020 |
Article en page(s) : |
p. 221-228 |
Note générale : |
Bibliogr. |
Langues : |
Anglais (eng) |
Catégories : |
Amorceurs (chimie) Caoutchouc nitrile-butadiène Caractérisation Composites -- Propriétés mécaniques Matériaux -- Modifications chimiques Oxyde de graphène Persulfate d'ammonium Soufre Stabilisants (chimie)
|
Index. décimale : |
668.4 Plastiques, vinyles |
Résumé : |
Insoluble sulfur (IS) is prepared at low temperature with graphene oxide (GO) as stabilizer and ammonium persulfate as initiator. The FTIR and Raman patterns show that the non-conjugate double bond of GO can couple to the long chain free radicals of IS. The TGA and EDS results show that the mass fraction of IS is 79.75 wt% in particles by refluxing method, much higher than that in particles by hydrothermal method, when the mass ratio in reactants of GO to sulfur was 3: 1. Under constant content of sulfur, the tensile stress and elongation at break of NBR/GO-S(h) and NBR/GO-S(r) composites are higher than those of NBR/Reduced GO composites with the addition of 3 phr GO-S(h), GO-S(r) and Reduced GO particles into NBR. It can provide a new technology for the preparation of IS with lower temperature, little energy consumption and less environmental pollution. It is also a new method for the modification and application of GO in rubber. |
Note de contenu : |
- EXPERIMENTAL : Materials - Preparation of GO, GO-S(h) and GO-S(r) - Preparation of NBR/GO-S(h) and NBR/GO-S(r) compsites
- INSTRUMENTATION
- RESULTS AND DISCUSSION : Structure characterization of GO-S composites - The conversion rate of sulfur - Application of GO-S(h) and GO-S(r) particles in NBR |
DOI : |
https://doi.org/10.3139/217.3910 |
En ligne : |
https://drive.google.com/file/d/1vTz1sw3uM_b9wTKHrGrg1XnesfHmAl_Y/view?usp=drive [...] |
Format de la ressource électronique : |
Pdf |
Permalink : |
https://e-campus.itech.fr/pmb/opac_css/index.php?lvl=notice_display&id=34016 |
in INTERNATIONAL POLYMER PROCESSING > Vol. XXXV, N° 2 (05/2020) . - p. 221-228