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Electroactive superelongation of carbon nanotube aggregates in liquid crystal medium

机译:碳纳米管聚集体在液晶介质中的电活性超伸长

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We report an effect of superelongation of carbon nanotube (CNT) aggregates driven by the electric field in a liquid crystal (LC) medium. The CNT aggregates started to elongate above a certain threshold field and sustained the elongation up to nearly 400% in the linear region with a large electroactive constant of 70 (V/mu m)(-1). The original morphology of the CNT aggregates was restored upon removal of the field. The elongation was fully reversible below a certain breakdown field, irrespective of the nematic or isotropic phase of the LC medium. The overall process involved (i) the alignment of CNT aggregates to increase the dipole energy of aggregates in the presence of the bias voltage, (ii) stretching of the CNTs by sliding-out from the bundles, and (iii) the entropic elasticity that restores the randomly entangled CNT network of the original aggregates after suppression of the bias voltage.
机译:我们报告了由液晶(LC)介质中的电场驱动的碳纳米管(CNT)聚集体的超伸长效应。 CNT聚集体开始在某个阈值场以上延伸,并在线性区域中以高达70(V /μm)(-1)的大电活性常数维持高达400%的延伸率。去除电场后,CNT聚集体的原始形态得以恢复。不论LC介质的向列相或各向同性相,在一定的击穿场以下,伸长率都是完全可逆的。整个过程涉及(i)在存在偏压的情况下对齐CNT聚集体以增加聚集体的偶极能量;(ii)通过从束中滑出来拉伸CNT,以及(iii)熵抑制偏压后,恢复原始聚集体的随机纠缠的CNT网络。

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