首页> 外文期刊>Journal of nanoscience and nanotechnology >Fabrication and Characteristics of a Multilayered Ionic Polymer Metal Composite Based on Nafion/Tetraethyl Orthosilicate and Nafion/MCNT Nanocomposites
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Fabrication and Characteristics of a Multilayered Ionic Polymer Metal Composite Based on Nafion/Tetraethyl Orthosilicate and Nafion/MCNT Nanocomposites

机译:Nafion /原硅酸四乙酯和Nafion / MCNT纳米复合材料的多层离子聚合物金属复合材料的制备和特性

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Nafion/multi-walled carbon nanotubes (Nafion/MCNT) and Nafion/tetraethyl orthosilicate (Nafion/TEOS) nanocomposites were prepared and used as starting materials in the fabrication of an ionic polymer metal composite (IPMC). Experimental data show that the Nafion/MCNT-based IPMC exhibited a blocking force that is two times higher than that of bare Nafion-based IPMC. This higher blocking force is due to the stable homogeneous dispersions of multiwalled carbon nanotubes as well as to their improved conductivity. Meanwhile, the Nafion/TEOS-based IPMC generated a blocking force that is more than two times higher than that of bare Nafion-based IPMC because of the induced channels and increased water content. In this paper, a novel Nafion membrane containing a primary Nafion/TEOS layer sandwiched between two outer Nafion/MCNT nanocomposite layers was prepared by consecutive casting of liquid solutions. By using the multilayered Nafion membrane, IPMC was carefully fabricated by electroless plating. In addition, the blocking force, displacement, and electric current of the IPMC were measured on the test apparatus. The multilayered IPMC exhibited a significantly improved blocking force of 6.5 gf as well as a long effective air-operating life time. Finally, this multilayered IPMC was successfully used to actuate the robotic fish.
机译:制备了Nafion /多壁碳纳米管(Nafion / MCNT)和Nafion /原硅酸四乙酯(Nafion / TEOS)纳米复合材料,并将其用作制备离子聚合物金属复合材料(IPMC)的起始材料。实验数据表明,基于Nafion / MCNT的IPMC表现出的阻滞力是基于基于Nafion的裸露IPMC的两倍。这种较高的阻断力是由于多壁碳纳米管的稳定均匀分散以及其改善的导电性。同时,基于Nafion / TEOS的IPMC产生的阻滞力比基于Nafion的裸露IPMC的阻滞力高两倍以上,这是由于诱导了通道并增加了水含量。在本文中,通过连续浇铸液体溶液制备了一种新颖的Nafion膜,该膜包含一个夹在两个Nafion / MCNT纳米复合外层之间的主Nafion / TEOS层。通过使用多层的Nafion膜,通过化学镀小心地制造了IPMC。另外,在测试装置上测量了IPMC的阻挡力,位移和电流。多层IPMC表现出显着改善的6.5 gf阻塞力,以及更长的有效空气操作寿命。最终,这种多层IPMC成功地用于驱动机器鱼。

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