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采用苯并恶嗪改性炭黑制备的导电聚丙烯腈纤维的性能

Properties of Conductive Polyacrylonitrile Fibers Prepared by Using Benzoxazine Modified Carbon Black.

作者信息

Ahn Damiro, Choi Hyun-Jung, Kim Ho-Dong, Yeo Sang Young

机构信息

Technical Textile & Materials R&D Group, Korea Institute of Industrial Technology, 143 Hanggaulro, Sangnok-gu, Ansan-si 15588, Korea.

Department of Fiber System Engineering, Dankook University, 152 Jukjeon-ro, Suji-gu, Yongin-si 16890, Korea.

出版信息

Polymers (Basel). 2020 Jan 9;12(1):179. doi: 10.3390/polym12010179.

Abstract

Composites of carbon black (CB) and polymers are attractive for producing conductive fibers. Herein, to achieve improved interactions with polymers, the surface of CB was modified to form 4-aminobenzoyl-functionalized carbon black (ABCB), benzoxazine-functionalized carbon black (BZCB), and Ag-anchored carbon black (Ag-ABCB). The surface-modified CBs were characterized by Fourier transform infrared spectroscopy and thermogravimetric analysis, and X-ray photoelectron spectroscopy was utilized to confirm the presence of Ag in Ag-ABCB. Conductive polyacrylonitrile (PAN) fibers were wet-spun with conductive fillers (CB, ABCB, Ag-ABCB, and BZCB) to investigate the effects of various functional groups on the electrical and mechanical properties. After annealing the conductive PAN fibers, the conductivity and tensile strength greatly increased, whereas the diameter decreased. Notably, the fiber with a BZCB/PAN weight ratio of 12/88 possessed a conductivity of 8.9 × 10 S/cm, and strength of 110.4 MPa, and thus the highest conductivity and best mechanical properties in the conductive PAN fiber. These results indicate that the annealed BZCB/PAN fibers have potential applications in the manufacturing of antistatic fabrics.

摘要

炭黑(CB)与聚合物的复合材料对于生产导电纤维具有吸引力。在此,为了实现与聚合物更好的相互作用,对CB的表面进行改性,以形成4-氨基苯甲酰官能化炭黑(ABCB)、苯并恶嗪官能化炭黑(BZCB)和银锚定炭黑(Ag-ABCB)。通过傅里叶变换红外光谱和热重分析对表面改性的CB进行了表征,并利用X射线光电子能谱确认了Ag-ABCB中Ag的存在。将导电填料(CB、ABCB、Ag-ABCB和BZCB)与导电聚丙烯腈(PAN)纤维进行湿法纺丝,以研究各种官能团对电学和力学性能的影响。对导电PAN纤维进行退火后,其电导率和拉伸强度大幅提高,而直径减小。值得注意的是,BZCB/PAN重量比为12/88的纤维具有8.9×10 S/cm的电导率和110.4 MPa的强度,因此在导电PAN纤维中具有最高的电导率和最佳的力学性能。这些结果表明,退火后的BZCB/PAN纤维在抗静电织物制造方面具有潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/986a/7023192/d69ad8768fe5/polymers-12-00179-g001.jpg

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