Abstract
Chemical cross-linking of rubber is a process to significantly modify the physical properties of the polymer. By this transformation, a highly viscous rubber compound is converted into an elastomer suitable for high-performance products like tires. Conventionally, sulfur or peroxide cross-linking is the preferred mode of vulcanization of the polymer practiced by different rubber industries. To fulfill the growing demand for more durable, high-performance rubber products, the development of self-healing rubber is considered one of the most promising approaches. The present study is an endeavor to mimic self-healing property in commercial epoxidized natural rubber (ENR) utilizing a mechanism that ensures the continuous supply of the healing agent to the affected area. With the advancement of metal coordination as a means of network structure, here, we report for the first time a different method for the preparation of self-healable ENR using mixed metals ions and diamine as cross-linking agents. The availability of a nitrogen coordination site of the diamine along with the reactivity of the oxirane group of epoxidized natural rubber toward metal ions enables the re-establishment of cross-linking sites in a damaged polymer network. A slow release of the metal ions from the metal amine complex to the ultra-active oxirane groups assists this reformation of the network. Additionally, some of the physical properties of the metal ion cross-linked samples are found to be comparable with those of conventional sulfur cross-linked samples.
| Original language | English |
|---|---|
| Pages (from-to) | 1190-1202 |
| Number of pages | 13 |
| Journal | ACS Applied Polymer Materials |
| Volume | 3 |
| Issue number | 2 |
| DOIs | |
| Publication status | Published - 2021 |
| Publication type | A1 Journal article-refereed |
Funding
S.M. is grateful to DAAD (German Academic Exchange Service) for the master thesis program in Germany. A.D. is thankful to DFG (SPP 2100, Soft Material Robotic Systems) for partial support to this work. The authors are also grateful to Maria Auf der Landwehr for the SEM investigations and H. Scheibner for the stress–strain experiments (both from IPF Dresden). A short discussion on the inorganic chemistry of this work with K. Pramanik, Jadavpur University, was also fruitful to this work.
Keywords
- coordination network
- curative feeding
- epoxidized natural rubber
- metal ion complex
- self-healing rubber
- viscoelastic mechanical properties
Publication forum classification
- Publication forum level 1
ASJC Scopus subject areas
- Polymers and Plastics
- Process Chemistry and Technology
- Organic Chemistry
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