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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Lightweight and conductive carbon black/chlorinated poly(propylene carbonate) foams with a remarkable negative temperature coefficient effect of resistance for temperature sensor applications
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Lightweight and conductive carbon black/chlorinated poly(propylene carbonate) foams with a remarkable negative temperature coefficient effect of resistance for temperature sensor applications

机译:轻量级和导电炭黑/氯化聚(丙烯碳酸丙酯)泡沫具有显着的负温度系数效应,电阻温度传感器应用

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摘要

In the current study, we fabricated lightweight and biodegradable conductive carbon black/chlorinated poly(propylene carbonate) (CB/CPPC) foams with a well-defined closed-cell structure by the combination of facile melt blending and the subsequent chemical foaming process. It was found that the foaming treatment could significantly lower the electrical percolation threshold from 2.48 vol% (solid composites) to 0.138 vol%. More interestingly, it was noted that the CB/CPPC foams exhibited a nearly-linear negative temperature coefficient (NTC) effect of resistance with increasing temperature from 25 degrees C to 70 degrees C, which was attributed to the gas expansion-induced thinning of cell walls and thereby a decreased distance between adjacent CB particles. The NTC effect of the CB/CPPC foams was more sensitive than that of most of the previously reported NTC composites. Moreover, the crosslinked CB/CPPC foams have both high sensitivity and good reproducibility of the NTC effect, which could well detect the change of temperature as shown in the demonstration experiments. The range of temperature detected by the CB/CPPC foams is from room temperature to 70 degrees C, which is ideal for wearable electronics and versatile temperature sensors in medical, food, and environment monitoring. The current study provides a facile route for large-scale preparation and practical application of NTC materials.
机译:在目前的研究中,我们通过熔融混合和随后的化学发泡方法的组合,用良好限定的闭孔结构制造轻质和可生物降解的导电炭黑/氯化聚(CBPC)泡沫。发现发泡处理可显着降低2.48体积%(固体复合材料)至0.138体积%的电渗滤阈值。有趣的是,有人指出,CB / CPPC泡沫表现出近似线性的负温度系数(NTC)的抵抗力,其温度从25℃升高到70℃,这归因于气体膨胀诱导的细胞变薄墙壁,从而相邻CB颗粒之间的距离降低。 CB / CPPC泡沫的NTC效应比先前报告的NTC复合材料的NTC效应更敏感。此外,交联的CB / CPPC泡沫具有高灵敏度和NTC效应的良好再现性,这可以很好地检测温度的变化,如示范实验所示。 CB / CPPC泡沫检测的温度范围为室温至70摄氏度,这对于医疗,食品和环境监测中的可穿戴电子和多功能温度传感器是理想的。目前的研究提供了NTC材料的大规模制备和实际应用的容易途径。

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