Self-healable and super-stretchable conductive elastomeric nanocomposites for efficient thermal management characteristics and electromagnetic interference shielding

被引:48
作者
Das, Palash [1 ]
Katheria, Ankur [1 ]
Ghosh, Sabyasachi [2 ]
Roy, Baidyanath [3 ]
Nayak, Jasomati [1 ]
Nath, Krishnendu [1 ]
Paul, Sangit [1 ]
Das, Narayan Ch. [1 ]
机构
[1] Indian Inst Technol, Rubber Technol Ctr, Kharagpur 721302, India
[2] Weizmann Inst Sci, Dept Mol Chem & Mat Sci, Rehovot, Israel
[3] Indian Inst Technol, Sch Nanosci & Technol, Kharagpur 721302, India
关键词
Self-healing; Multi-walled carbon nanotubes (MWCNTs); Electrical conductivity; EMI shielding effectiveness; Thermal conductivity; Reprocessing and recycling; CARBON NANOTUBE; BUTADIENE RUBBER; ELECTRICAL-CONDUCTIVITY; MECHANICAL-PROPERTIES; COMPOSITES; LIGHTWEIGHT; STYRENE; ROBUST; MWCNTS; XNBR;
D O I
10.1016/j.synthmet.2023.117304
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Due to the pressing need to mitigate current electromagnetic wave pollution (connecting to the 5 G era), lightweight, stretchable, thermally, and electrically conductive nanocomposite materials have attracted signifi-cant scientific interest. Herein, self-healable carboxylated nitrile butadiene elastomeric (XNBR) based nano-composites were fabricated via sequential wet cum melt mixing technique utilizing multi-walled carbon nanotubes (MWCNTs). The metal-ligand complexes in the XNBR elastomer chain endow a reversible network that leads to self-healing ability. The higher aspect ratio of MWCNTs assists in constructing interconnected conductive pathways inside the XNBR matrix. The nanocomposite with MWCNTs (15 phr) provided an excellent EMI shielding effectiveness of -27.4 dB, whereas the nanocomposite exhibited a thermal conductivity of 0.85 W.m- 1. K-1. Interestingly, the interconnected networking pathway of MWCNTs in the XNBR matrix prepared a tunable analogical structure providing an absorption-dominant shielding mechanism. Under severe practical and environmental testing conditions, the nanocomposites showed a minute change in electromagnetic effectiveness, demonstrating their good performance for outdoor applications. These ultra-lightweight, self-healable, recy-clable MWCNTs/ XNBR EMI shields are promising materials for next-generation super-stretchable and portable smart electronics.
引用
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页数:19
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