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1-D polymer ternary composites:Understanding materials interaction, percolation behaviors and mechanism toward ultra-high stretchable and super-sensitive strain sensors 被引量:6
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作者 Senlong Yu Xingping Wang +1 位作者 Hengxue Xiang Meifang Zhu 《Science China Materials》 SCIE EI CSCD 2019年第7期995-1004,共10页
A series of 1-D polymer ternary composites based on poly(styrene-butadiene-styrene)(SBS)/carbon nanotubes(CNTs)/few-layer graphene(FLG) conductive fibers(SCGFs)were prepared via wet-spinning. Employed as ultra-high st... A series of 1-D polymer ternary composites based on poly(styrene-butadiene-styrene)(SBS)/carbon nanotubes(CNTs)/few-layer graphene(FLG) conductive fibers(SCGFs)were prepared via wet-spinning. Employed as ultra-high stretchable and super-sensitive strain sensors, the ternary composite fiber materials’ interaction, percolation behaviors and mechanism were systematically explored. The resultant SCGFs-based strain sensors simultaneously exhibited high sensitivity, superior stretchability(with a gauge factor of 5,467 under 600% deformation) and excellent durability under different test conditions due to excellent flexibility of SBS, the synergistic effect of hybrid conductive nanofibers and the strong π-π interaction. Besides, the conductive networks in SBS matrix were greatly affected by the mass ratio of CNTs and FLG, and thus the piezoresistive performances of the strain sensors could be controlled by changing the content of hybrid conductive fillers. Especially, the SCGFs with 0.30 wt.%CNTs(equal to their percolation threshold 0.30 wt.%) and 2.7 wt.% FLG demonstrated the highest sensitivity owing to the bridge effect of FLG between adjacent CNTs. Whereas, the SCGFs with 1.0 wt.% CNTs(higher than their percolation threshold) and 2.0 wt.% FLG showed the maximum strain detection range(600%) due to the welding connection caused by FLG between the contiguous CNTs. To evaluate the fabricated sensors, the tensile and the cyclic mechanical recovery properties of SCGFs were tested and analyzed. Additionally, a theoretical piezoresistive mechanism of the ternary composite fiber was investigated by the evolution of conductive networks according to tunneling theory. 展开更多
关键词 strain sensor poly (styrene-butadiene-styrene) carbon nanotube few-layer graphene w et-spinning
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干湿法聚丙烯腈原丝预氧化特性研究
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作者 李常清 史晓健 +3 位作者 马雷 何州文 朱镇 徐樑华 《化工新型材料》 CAS CSCD 北大核心 2014年第10期109-111,共3页
聚丙烯腈(PAN)溶液通过空气层进入凝固浴成纤制备干湿法原丝。采用X光衍射(XRD)、声速仪、原子力显微镜(AFM)表征干湿法原丝的结构,利用差示扫描量热仪(DSC)、固体核磁谱(NMR)、元素分析仪(EA)等研究了干湿法原丝的预氧化反应性质。结... 聚丙烯腈(PAN)溶液通过空气层进入凝固浴成纤制备干湿法原丝。采用X光衍射(XRD)、声速仪、原子力显微镜(AFM)表征干湿法原丝的结构,利用差示扫描量热仪(DSC)、固体核磁谱(NMR)、元素分析仪(EA)等研究了干湿法原丝的预氧化反应性质。结果表明:与湿法原丝相比,干湿法原丝表面光滑、结构致密。结构致密程度的差异,不影响干湿法原丝在氮气中预氧化过程的环化和脱氢反应,但极大影响了有氧介质中的环化、脱氢和氧化反应,使预氧化反应滞后。与湿法原丝的预氧温谱相比,干湿法原丝预氧温谱更高,特别要提高高温区的预氧温度。 展开更多
关键词 干湿法 PAN原丝 致密结构 预氧化 反应程度
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