Three-Dimensional Graphene Structure for Healable Flexible Electronics Based on Diels-Alder Chemistry.
Li, Jinhui; Liu, Qiang; Ho, Derek; Zhao, Songfang; Wu, Shuwen; Ling, Lei; Han, Fei; Wu, Xinxiu; Zhang, Guoping; Sun, Rong
刊名ACS APPLIED MATERIALS & INTERFACES
2018
文献子类期刊论文
英文摘要Wearable electronics with excellent stretchability and sensitivity have emerged as a very promising field with wide applications such as e-skin and human motion detection. Although three-dimensional (3D) graphene structures (GS) have been reported for high-performance strain sensors, challenges still remain such as the high cost of GS preparation, low stretchability, and the lack of ability to heal itself. In this paper, we reported a novel self-healing flexibleelectronics with 3D GS based on Diels-Alder (DA) chemistry. Furfurylamine (FA) was employed as a reducing as well as a modifying agent, forming GS by FA (FAGS)/DA bonds contained polyurethane with the "infiltrate-gel-dry" process. The as-prepared composite exhibited excellent stretchability (200%) and intrinsic conductivity with low incorporation of graphene (about 2 wt %), which could be directly employed for flexible electronics to detect human motions. Besides, the FAGS/DAPU composite exhibited lower temperature retro-DA response for the continuous graphene networks. Highly effective healing of the composites by heat and microwave has been demonstrated successfully.
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语种英语
内容类型期刊论文
源URL[http://ir.siat.ac.cn:8080/handle/172644/13610]  
专题深圳先进技术研究院_集成所
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Li, Jinhui,Liu, Qiang,Ho, Derek,et al. Three-Dimensional Graphene Structure for Healable Flexible Electronics Based on Diels-Alder Chemistry.[J]. ACS APPLIED MATERIALS & INTERFACES,2018.
APA Li, Jinhui.,Liu, Qiang.,Ho, Derek.,Zhao, Songfang.,Wu, Shuwen.,...&Sun, Rong.(2018).Three-Dimensional Graphene Structure for Healable Flexible Electronics Based on Diels-Alder Chemistry..ACS APPLIED MATERIALS & INTERFACES.
MLA Li, Jinhui,et al."Three-Dimensional Graphene Structure for Healable Flexible Electronics Based on Diels-Alder Chemistry.".ACS APPLIED MATERIALS & INTERFACES (2018).
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