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Stretchable conducting gold films prepared with composite MWNT/PDMS substrates

机译:用复合MWNT / PDMS基材制备的可拉伸导电金膜

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Novel stretchable conducting films were prepared by depositing gold layers onto polymer nano-composites substrates formed by in-situ crosslinking of polydimethylsiloxane (PDMS) in the presence of multiwall carbon nanotubes (MWNT). The MWNT content interferes with the PDMS cure reaction giving variations in thermal degradation, solvent swelling, mechanical and electrical properties. Tensile cycling experiments were carried out on the gold-coated PDMS and nano-composite substrates SEM analysis and electrical measurements demonstrated that the crack widening and increased electrical resistance observed during strain cycling were reversible. The inclusion of 8 % MWNT into PDMS brought more micro-cracking in the gold layer yet reduced the electrical resistance of the gold-coated samples by 172X at 5 % strain, 38X at 10 % strain and 19X at 20 %. Hence, this improvement in conduction is attributed to assisted-conduction through the MWNT loaded substrate. This mechanism results in a more stable and reproducible electrical behaviour, making electrical conduction less critically dependent on defects in the gold layer.
机译:通过在多壁碳纳米管(MWNT)存在下将金层沉积在通过聚二甲基硅氧烷(PDMS)进行原位交联形成的聚合物纳米复合材料基材上,制备出新型可拉伸导电膜。 MWNT含量会干扰PDMS固化反应,从而导致热降解,溶剂溶胀,机械和电气性能发生变化。在镀金的PDMS和纳米复合材料基板上进行了拉伸循环实验,SEM分析和电学测量表明,在应变循环过程中观察到的裂纹扩展和电阻增加是可逆的。在PDMS中包含8%的MWNT,在金层中产生了更多的微裂纹,但降低了镀金样品的电阻,应变为5%时为172X,应变为10%时为38X,应变为20%时为19X。因此,这种导电性的改善归因于通过负载MWNT的基板的辅助导电。该机理导致更稳定和可再现的电行为,使得电传导不太关键地依赖于金层中的缺陷。

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