Wang Chen, Qiao Lili, Li Sai, Duan Pengwei, Fu Xuewei, Duan Yatong, Cheng Hong-Bo, Liu Jun, Zhang Liqun
State Key Laboratory of Organic-Inorganic Composites, College of Materials Science and Engineering, Beijing University of Chemical Technology, 15 North Third Ring Road, Beijing, 100029, P. R. China.
Small. 2024 Nov;20(44):e2403941. doi: 10.1002/smll.202403941. Epub 2024 Jul 26.
Photo-responsive materials have garnered significant interest for their ability to react to non-contact stimuli, though achieving self-healing under gentle conditions remains an elusive goal. In this research, an innovative and straightforward approach for synthesizing silicone elastomers is proposed that not only self-heal at room temperature but also possess unique photochromic properties and adjustable mechanical strength, along with being both transparent and reprocessable. Initially, aldehyde-bifunctional dithiophene-ethylene molecules with dialdehyde groups (DTEM) and isocyanurate (IPDI) is introduced into the aminopropyl-terminated polydimethylsiloxane (HN-PDMS-NH) matrix. Subsequently, palladium is incorporated to enhance coordination within the matrix. These silicone elastomers transition to a blue state under 254 nm UV light and revert to transparency under 580 nm light. Remarkably, they demonstrate excellent thermal stability at temperatures up to 100 °C and show superior fatigue resistance. The optical switching capabilities of the silicone elastomers significantly affect both their mechanical characteristics and self-healing abilities. Notably, the PDMS-DTEM-IPDI-@Pd silicone elastomer, featuring closed-loop photo-switching molecules, exhibits a fracture toughness that is 1.3 times greater and a room temperature self-healing efficiency 1.4 times higher than its open-loop counterparts. This novel photo-responsive silicone elastomer offers promising potential for applications in data writing and erasure, UV protective coatings, and micro-trace development.
光响应材料因其对非接触刺激的反应能力而备受关注,尽管在温和条件下实现自愈仍是一个难以实现的目标。在本研究中,提出了一种创新且简单的合成有机硅弹性体的方法,该弹性体不仅能在室温下自愈,还具有独特的光致变色特性和可调节的机械强度,同时兼具透明性和可再加工性。最初,将具有二醛基的醛基双功能二噻吩乙烯分子(DTEM)和异氰脲酸酯(IPDI)引入到氨基丙基封端的聚二甲基硅氧烷(HN-PDMS-NH)基体中。随后,引入钯以增强基体内的配位作用。这些有机硅弹性体在254 nm紫外光下转变为蓝色状态,在580 nm光下恢复为透明。值得注意的是,它们在高达100°C的温度下表现出优异的热稳定性,并具有出色的抗疲劳性。有机硅弹性体的光开关能力对其机械特性和自愈能力都有显著影响。值得注意的是,具有闭环光开关分子的PDMS-DTEM-IPDI-@Pd有机硅弹性体,其断裂韧性比开环对应物高1.3倍,室温自愈效率高1.4倍。这种新型光响应有机硅弹性体在数据写入和擦除、紫外线防护涂层以及微痕显影等应用方面具有广阔的前景。