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Positive temperature coefficient thermistors based on carbon nanotube/polymer composites

机译:基于碳纳米管/聚合物复合材料的正温度系数热敏电阻

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In order to explore availability of carbon nanotube (CNT)-based positive temperature coefficient (PTC) thermistors in practical application, we prepared carbon nanotube (CNT) filled high density polyethylene (HDPE) composites by using conventional melt-mixing methods, and investigated their PTC effects in details. The CNT-based thermistors exhibit much larger hold current and higher hold voltage, increasing by 129% in comparison with the commercial carbon black (CB) filled HDPE thermistors. Such high current-bearing and voltage-bearing capacity for the CNT/HDPE thermistors is mainly attributed to high thermal conductivity and heat dissipation of entangled CNT networks. Moreover, the CNT/HDPE thermistors exhibit rapid electrical response to applied voltages, comparable to commercial CB-based thermistors. In light of their high current-bearing capacity and quick response, the CNT-based thermistors have great potential to be used as high-performance thermistors in practical application, especially in some critical circumstances of high temperature, large applied currents, and high applied voltages.
机译:为了探索基于碳纳米管(CNT)的正温度系数(PTC)热敏电阻在实际应用中的可用性,我们使用常规的熔融混合方法制备了填充有碳纳米管(CNT)的高密度聚乙烯(HDPE)复合材料,并对其进行了研究。 PTC效果的详细信息。与商用炭黑(CB)填充的HDPE热敏电阻相比,基于CNT的热敏电阻具有更大的保持电流和更高的保持电压,增加了129%。 CNT / HDPE热敏电阻的这种高电流和电压承受能力主要归因于缠结的CNT网络的高导热性和散热性。此外,与基于CB的热敏电阻相比,CNT / HDPE热敏电阻表现出对施加电压的快速电响应。鉴于其高载流能力和快速响应,基于CNT的热敏电阻在实际应用中具有很大的潜力,可以用作高性能热敏电阻,特别是在某些高温,大施加电流和高施加电压的关键情况下。

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