Lee Ji Mok, Noh Guk Yun, Kim Byoung Gak, Yoo Youngjae, Choi Woo Jin, Kim Dong-Gyun, Yoon Ho Gyu, Kim Yong Seok
Advanced Materials Division, Korea Research Institute of Chemical Technology, 141 Gajeong-ro, Yuseong-gu, Daejeon 34114, Republic of Korea.
Department of Materials Science and Engineering, Korea University, Seoul 02841, Republic of Korea.
ACS Macro Lett. 2019 Aug 20;8(8):912-916. doi: 10.1021/acsmacrolett.9b00306. Epub 2019 Jul 16.
The synthesis and characterization of poly(phenylene polysulfide) networks (PSNs) with controlled average sulfur ranks, from elemental sulfur (ES) and -diiodobenzene (DIB), are investigated. The PSN films, prepared via simple hot pressing, are found to possess large extensibility up to around 300% and complete recovery of shape and mechanical properties after deformation, which are attributed to the loosely cross-linked network structures mainly consisting of linear poly(phenylene polysulfide) chains. The covalent polysulfide linkages in the PSNs also exhibit dynamic behaviors under ultraviolet (UV) or thermal treatment, thus, enabling self-healing and reprocessing of the films when scratched and broken, respectively. Combined with the unique mechanical properties of the PSNs, their high refractive index and excellent infrared (IR) transparency contribute to the preparation of stretchable, healable, and reprocessable IR transmitting materials for potential deformable and stretchable optical applications.
研究了由元素硫(ES)和对二碘苯(DIB)合成具有可控平均硫秩的聚亚苯基多硫化物网络(PSN)及其表征。通过简单热压制备的PSN薄膜被发现具有高达约300%的大拉伸性,并且在变形后形状和机械性能能完全恢复,这归因于主要由线性聚亚苯基多硫化物链组成的松散交联网络结构。PSN中的共价多硫化物键在紫外线(UV)或热处理下也表现出动态行为,因此,分别使薄膜在被划伤和破裂时能够自愈和再加工。结合PSN独特的机械性能,其高折射率和优异的红外(IR)透明度有助于制备用于潜在可变形和可拉伸光学应用的可拉伸、可自愈和可再加工的红外传输材料。