Grupo de Transiciones de Fase y Materiales Funcionales, Departamento de Física, Universidad del Valle, Santiago de Cali 760032, Colombia.
Centro de Excelencia en Nuevos Materiales (CENM), Universidad del Valle, Santiago de Cali 760032, Colombia.
Molecules. 2023 Apr 20;28(8):3598. doi: 10.3390/molecules28083598.
The impacts on the morphological, electrical and hardness properties of thermoplastic polyurethane (TPU) plates using multi-walled carbon nanotubes (MWCNTs) as reinforcing fillers have been investigated, using MWCNT loadings between 1 and 7 wt%. Plates of the TPU/MWCNT nanocomposites were fabricated by compression molding from extruded pellets. An X-ray diffraction analysis showed that the incorporation of MWCNTs into the TPU polymer matrix increases the ordered range of the soft and hard segments. SEM images revealed that the fabrication route used here helped to obtain TPU/MWCNT nanocomposites with a uniform dispersion of the nanotubes inside the TPU matrix and promoted the creation of a conductive network that favors the electronic conduction of the composite. The potential of the impedance spectroscopy technique has been used to determine that the TPU/MWCNT plates exhibited two conduction mechanisms, percolation and tunneling conduction of electrons, and their conductivity values increase as the MWCNT loading increases. Finally, although the fabrication route induced a hardness reduction with respect to the pure TPU, the addition of MWCNT increased the Shore A hardness behavior of the TPU plates.
采用多壁碳纳米管(MWCNTs)作为增强填料,研究了其对热塑性聚氨酯(TPU)板的形态、电学和硬度性能的影响,MWCNT 的用量为 1 至 7wt%。通过从挤出的颗粒中压缩成型制备了 TPU/MWCNT 纳米复合材料板。X 射线衍射分析表明,MWCNTs 的加入增加了软段和硬段的有序范围。SEM 图像显示,这里使用的制备路线有助于获得 TPU/MWCNT 纳米复合材料,其中纳米管在 TPU 基体中均匀分散,并促进了有利于复合材料电子传导的导电网络的形成。阻抗谱技术的潜力已被用于确定 TPU/MWCNT 板表现出两种传导机制,即电子的渗流和隧道传导,并且随着 MWCNT 负载的增加,其电导率值增加。最后,尽管与纯 TPU 相比,制备路线导致硬度降低,但 MWCNT 的添加增加了 TPU 板的肖氏 A 硬度行为。