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Study of electrothermal properties of silver nanowire/polydopamine/cotton-based nanocomposites

机译:银纳米线/聚二胺/棉纳米复合材料的电热性能研究

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In this study, cotton fabrics were reported to be typically functionalized by loading silver nanowires (AgNW) on the surface of the polydopamine modified cotton fabric. Firstly, AgNW were prepared by a polyol method and then a polydopamine-modified cotton fabric was prepared by being immersed in AgNW dispersion by the dip-coating method. The resulting silver nanowire/polydopamine/cotton-based nanocomposites (APCN) has a surface specific resistance as low as 2.4 and has good durability and flexibility. In addition, the electrothermal properties of APCN were investigated by applied voltage. The result showed that the composite material can reach 80 degrees C in a short time under the voltage of 1.8V, and conform to the power balance model. The steady-state temperature of the composite material is closely related to the voltage, and has a quadratic relationship with the voltage and expresses linear relation with the electric power.
机译:在该研究中,据报道,棉织物通常通过在聚二胺改性棉织物的表面上装载银纳米线(AgNW)来官能化。 首先,通过多元醇方法制备AgNW,然后通过浸涂法浸入AgNW分散体中制备多胺改性的棉织物。 所得的银纳米线/聚德米多米/棉基纳米复合材料(APCN)具有低至2.4的表面特异性电阻,具有良好的耐久性和柔韧性。 此外,通过施加的电压研究APCN的电热性能。 结果表明,复合材料在1.8V电压下的短时间内可以达到80度C,并符合电力平衡模型。 复合材料的稳态温度与电压密切相关,并且与电压具有二次关系,并表达与电力的线性关系。

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