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A fast-healing and high-performance metallosupramolecular elastomer based on pyridine-Cu coordination 被引量:1
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作者 Hui Liu qiaoqiao shen +8 位作者 Linjun Zhang Shiyu Gu Yan Peng Qi Wu Hui Xiong Hao Zhang Lijuan Zhao Guangsu Huang Jinrong Wu 《Science China Materials》 SCIE EI CAS CSCD 2022年第7期1943-1951,共9页
Elastomers easily undergo a catastrophic failure as soon as a crack is introduced by mechanical damage.Thus,it is extremely important for elastomers to possess fast healing ability,which enables the quick reparation o... Elastomers easily undergo a catastrophic failure as soon as a crack is introduced by mechanical damage.Thus,it is extremely important for elastomers to possess fast healing ability,which enables the quick reparation of cracks.However,developing elastomers with fast self-healing ability and high mechanical strength is highly challenging.Herein,we fabricate a metallosupramolecular elastomer by facilely introducing pyridine-Cu coordination into a copolymer of ethyl acrylate and vinyl pyridine.Interestingly,the pyridine-Cu coordination has a strong photothermal effect,which readily increases the sample temperature to 60℃ in 30 s under near-infrared light.At this temperature,the sticky reptation modes are activated and thus serve as the driving force for network reorganization and fast self-healing of the metallosupramolecular elastomer.Albeit with a tensile strength of 10 MPa,the scratched and completely fractured samples can be healed within 2 min and 3 h,respectively.Moreover,during the damage and healing processes,the break and reformation of the coordination bonds can be tracked through laser confocal micro-Raman spectroscopy.This provides a microscopic methodology to monitor the bond-level healing kinetics of metallosupramolecular polymers. 展开更多
关键词 metallosupramolecular elastomer photothermal effect molecular dynamics healing mechanism laser confocal micro-Raman
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