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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >An electrospun polymer composite with fullerene-multiwalled carbon nanotube exohedral complexes can act as memory device
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An electrospun polymer composite with fullerene-multiwalled carbon nanotube exohedral complexes can act as memory device

机译:具有富勒烯 - 多壁碳纳米管Exohedral络合物的电纺反应性复合物可以充当记忆装置

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摘要

Functional polymer nanocomposites with distinctive electrical properties made of nanocarbon structures and biodegradable polymers are promising materials for the development of flexible and eco-friendly smart systems. In this work, a novel electrospun conductive polymer nanocomposite made of polycaprolactone with an exohedral complex made of multiwalled carbon nanotubes and fullerene C60 was prepared and characterized. The preparation was straightforward and the complexes self-assembled within the nanocomposite fibers. The nanocomposite showed electrical switching behavior due to charge accumulation of fullerene C60 upon electrical stimulation. Write-once read-many memory devices were fabricated by electrospinning a nanocomposite with 0.8%wt. fullerene C60 onto interdigitated coplanar electrodes. The device retained the ON state for more than 60 days and could be thermally reset, reprogrammed and erased with subsequent electrical and thermal cycling. Moreover, the electrical resistance of the device could be modulated by applying different programming voltage amplitudes and programming times, which revealed its adaptive behavior and potential application to neuromorphic systems.
机译:具有由纳米碳结构和可生物降解的聚合物制成的具有独特电气性质的功能性聚合物纳米复合材料是开发灵活和生态友好型智能系统的有希望的材料。在这项工作中,制备由多己内酯制成的新型电纺导电聚合物纳米复合材料,其具有由多壁碳纳米管和富勒烯C60制成的exohedral络合物。制剂是简单的,并且复合物在纳米复合纤维内自组装。由于富勒烯C60在电刺激时,纳米复合材料显示出电气开关行为。通过用0.8%wt静电纺丝粉状化合物,通过冬季纺丝制造一旦读取许多存储器件。富勒烯C60进入交叉间共面电极。该装置保留了ON状态超过60天,并且可以热复位,重新编程并用随后的电气和热循环擦除。此外,通过施加不同的编程电压幅度和编程时间,可以调制装置的电阻,这揭示了其适应行为和潜在应用于神经形态系统。

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