Whba Rawdah, Su'ait Mohd Sukor, Tian Khoon Lee, Ibrahim Salmiah, Mohamed Nor Sabirin, Ahmad Azizan
Department of Chemical Sciences, Faculty of Sciences and Technology, Universiti Kebangsaan Malaysia, Bangi 43600, Malaysia.
Department of Chemistry, Faculty of Applied Sciences, Taiz University, Taiz 6803, Yemen.
Polymers (Basel). 2021 Feb 23;13(4):660. doi: 10.3390/polym13040660.
The exploitation of epoxidized natural rubber (ENR) in electrochemical applications is approaching its limits because of its poor thermo-mechanical properties. These properties could be improved by chemical and/or physical modification, including grafting and/or crosslinking techniques. In this work, acrylonitrile (ACN) has been successfully grafted onto ENR- 25 by a radical photopolymerization technique. The effect of (ACN to ENR) mole ratios on chemical structure and interaction, thermo-mechanical behaviour and that related to the viscoelastic properties of the polymer was investigated. The existence of the -C≡N functional group at the end-product of ACN--ENR is confirmed by infrared (FT-IR) and nuclear magnetic resonance (NMR) analyses. An enhanced grafting efficiency (~57%) was obtained after ACN was grafted onto the isoprene unit of ENR- 25 and showing a significant improvement in thermal stability and dielectric properties. The viscoelastic behaviour of the sample analysis showed an increase of storage modulus up to 150 × 10 MPa and the temperature of glass transition () was between -40 and 10 °C. The loss modulus, relaxation process, and tan delta were also described. Overall, the ACN--ENR shows a distinctive improvement in characteristics compared to ENR and can be widely used in many applications where natural rubber is used but improved thermal and mechanical properties are required. Likewise, it may also be used in electronic applications, for example, as a polymer electrolyte in batteries or supercapacitor.
由于热机械性能较差,环氧化天然橡胶(ENR)在电化学应用中的开发已接近极限。这些性能可通过化学和/或物理改性来改善,包括接枝和/或交联技术。在这项工作中,通过自由基光聚合技术成功地将丙烯腈(ACN)接枝到ENR-25上。研究了(ACN与ENR)摩尔比对聚合物化学结构与相互作用、热机械行为以及粘弹性性能的影响。通过红外(FT-IR)和核磁共振(NMR)分析证实了ACN-ENR最终产物中-C≡N官能团的存在。ACN接枝到ENR-25的异戊二烯单元上后,接枝效率提高(约57%),热稳定性和介电性能有显著改善。样品分析的粘弹性行为表明储能模量增加到150×10 MPa,玻璃化转变温度()在-40至10°C之间。还描述了损耗模量、松弛过程和损耗角正切。总体而言,与ENR相比,ACN-ENR在性能上有显著改善,可广泛应用于许多需要天然橡胶但要求改善热性能和机械性能的应用中。同样,它也可用于电子应用,例如,作为电池或超级电容器中的聚合物电解质。