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导电炭黑填充聚酰胺复合材料的热性能、形态学性能、电学性能及触觉传感器应用

Thermal, Morphological, Electrical Properties and Touch-Sensor Application of Conductive Carbon Black-Filled Polyamide Composites.

作者信息

Brunella Valentina, Rossatto Beatrice Gaia, Scarano Domenica, Cesano Federico

机构信息

NIS (Nanostructured Interfaces and Surfaces) Interdepartmental Centre and Department of Chemistry, University of Torino, Via P. Giuria 7, 10125 Torino, Italy.

出版信息

Nanomaterials (Basel). 2021 Nov 17;11(11):3103. doi: 10.3390/nano11113103.

Abstract

Polyamide 66 (PA66) is a well-known engineering thermoplastic polymer, primarily employed in polymer composites with fillers and additives of different nature and dimensionality (1D, 2D and 3D) used as alternatives to metals in various technological applications. In this work, carbon black (CB), a conductive nanofiller, was used to reinforce the PA66 polymer in the 9-27 wt. % CB loading range. The reason for choosing CB was intrinsically associated with its nature: a nanostructured carbon filler, whose agglomeration characteristics affect the electrical properties of the polymer composites. Crystallinity, phase composition, thermal behaviour, morphology, microstructure, and electrical conductivity, which are all properties engendered by nanofiller dispersion in the polymer, were investigated using thermal analyses (thermogravimetry and differential scanning calorimetry), microscopies (scanning electron and atomic force microscopies), and electrical conductivity measurements. Interestingly, direct current (DC) electrical measurements and conductive-AFM mapping through the samples enable visualization of the percolation paths and the ability of CB nanoparticles to form aggregates that work as conductive electrical pathways beyond the electrical percolation threshold. This finding provides the opportunities to investigate the degree of filler dispersion occurring during the transformation processes, while the results of the electrical properties also contribute to enabling the use of such conductive composites in sensor and device applications. In this regard, the results presented in this paper provide evidence that conductive carbon-filled polymer composites can work as touch sensors when they are connected with conventional low-power electronics and controlled by inexpensive and commercially available microcontrollers.

摘要

聚酰胺66(PA66)是一种著名的工程热塑性聚合物,主要用于与具有不同性质和维度(一维、二维和三维)的填料及添加剂组成的聚合物复合材料中,在各种技术应用中作为金属的替代品。在这项工作中,导电纳米填料炭黑(CB)被用于在9 - 27 wt.%的CB负载范围内增强PA66聚合物。选择CB的原因与其性质内在相关:它是一种纳米结构的碳填料,其团聚特性会影响聚合物复合材料的电学性能。通过热分析(热重分析和差示扫描量热法)、显微镜技术(扫描电子显微镜和原子力显微镜)以及电导率测量,研究了纳米填料在聚合物中分散所产生的结晶度、相组成、热行为、形态、微观结构和电导率等性能。有趣的是,通过样品的直流(DC)电学测量和导电原子力显微镜测绘能够可视化渗流路径以及CB纳米颗粒形成聚集体的能力,这些聚集体在超过电学渗流阈值时可作为导电通路。这一发现为研究转变过程中填料的分散程度提供了机会,同时电学性能的结果也有助于使这种导电复合材料能够应用于传感器和器件领域。在这方面,本文给出的结果证明,当导电碳填充聚合物复合材料与传统低功率电子设备连接并由廉价的商用微控制器控制时,它们可以用作触摸传感器。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c173/8619449/53e9b79284a5/nanomaterials-11-03103-g001.jpg

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