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首页> 外文期刊>ACS applied materials & interfaces >3D-Printed Graphene/Polydimethylsiloxane Composites for Stretchable and Strain-Insensitive Temperature Sensors
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3D-Printed Graphene/Polydimethylsiloxane Composites for Stretchable and Strain-Insensitive Temperature Sensors

机译:3D印刷石墨烯/聚二甲基硅氧烷复合材料,可拉伸和应变不敏感温度传感器

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摘要

Materials possessing exceptional temperature sensitivity and high stretchability are of importance for real-time temperature monitoring on three-dimensional components with complex geometries, when operating under various external deformation modes. Herein, we develop a stretchable temperature sensor consisting of cellular graphene/polydimethylsiloxane composite. The first of its kind, graphene-based polymer composites with desired microstructures are produced through a direct 3D ink-writing technique. The resultant composites possess longrange -ordered and precisely controlled cellular structure. Temperature-sensing properties of three cellular structures, including grid, triangular, and hexagonal porous structures are studied. It is found that all three cellular composites present more stable sensitivities than solid composites under external strains because of the fine porous structure that can effectively share the external strain, and the composites with a grid structure delivered particularly a stable sensing performance, showing only similar to 15% sensitivity decrease at a large tensile strain of 20%. Taking full advantage of the composites with a grid structure in terms of sensitivity, durability, and stability, practical applications of the composite are demonstrated to monitor the cooling process of a heated tube and measure skin temperature accompanying an arbitrary wristwork.
机译:具有卓越温度敏感性和高拉伸性的材料对于具有复杂几何形状的三维部件的实时温度监测,在各种外部变形模式下运行时具有重要性。在此,我们开发一种由细胞石墨烯/聚二甲基硅氧烷复合材料组成的可拉伸温度传感器。其首先,具有所需微结构的基于石墨烯的聚合物复合材料通过直接的3D油墨写入技术产生。所得到的复合材料具有Longrange Ordered和精确控制的蜂窝结构。研究了三个蜂窝结构的温度感测性,包括网格,三角形和六边形多孔结构。发现所有三种细胞复合材料的敏感性比外部菌株在外部菌株下的固体复合材料更稳定,因为可以有效地共享外部应变,并且具有栅格结构的复合材料,特别是稳定的感测性能,显示出类似于类似的15%的敏感性在20%的大拉伸应变下降。在灵敏度,耐久性和稳定性方面充分利用具有电网结构的复合材料,对复合材料的实际应用进行了说明,以监测加热管的冷却过程并测量随意腕带的伴随的皮肤温度。

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