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导电聚(间甲苯胺)在化学还原羊毛织物上附着力的改善。

Improvement of the adhesion of conductive poly(m-toluidine) onto chemically reduced-wool fabrics.

作者信息

Kalkan ErdoĞan Meryem, KarakiŞla Meral, SaÇak Mehmet

机构信息

Department of Chemistry, Faculty of Science, Ankara University, Ankara Turkey.

出版信息

Turk J Chem. 2020 Jun 1;44(3):775-790. doi: 10.3906/kim-2002-77. eCollection 2020.

Abstract

Wool has disulphide bonds containing-hydrophobic external keratin layers, which act as a barrier for the modification through coating with hydrophilic materials. For that reason, in this work, to ensure a dense and homogenous conductive polymer coating onto the wool, the fabrics were subjected to the reduction process in the aqueous alkaline medium containing agents that can attack these disulphide bonds. Then, one of the polyaniline derivatives, poly(mtoluidine) (PMT), was coated onto wool by in situ polymerization of m-toluidine sulphate using ammonium persulfate (APS) as an oxidant. The effects of conditions, such as the composition of reduction-bath and types of dopants were investigated, on the mass increase (%) and surface resistivity of the composite. The reduction pretreatment of wool with sodium hydrosulphide significantly improved the coating density, conductivity, and colour shade of PMT on the surface, compared to an untreated one. The coating stability of PMT/wool composite was examined by rubbing test and detergent washing, through surface resistivity measurements. The changes in structural and surface properties of wool fabrics were determined with ATR-FTIR, contact angle, and optical microscopic techniques, respectively. The performance of PMT/wool composite was also examined in the electromagnetic shielding effectiveness (EMSE) measurements within 30 MHz-3 GHz.

摘要

羊毛含有含二硫键的疏水外部角蛋白层,这对通过用亲水性材料涂层进行改性起到了阻碍作用。因此,在本研究中,为确保在羊毛上形成致密且均匀的导电聚合物涂层,将织物置于含有能攻击这些二硫键的试剂的碱性水溶液中进行还原处理。然后,通过以过硫酸铵(APS)作为氧化剂,使间甲苯胺硫酸盐原位聚合,将聚苯胺衍生物之一聚(间甲苯胺)(PMT)涂覆在羊毛上。研究了还原浴组成和掺杂剂类型等条件对复合材料的质量增加率(%)和表面电阻率的影响。与未处理的羊毛相比,用硫氢化钠对羊毛进行还原预处理显著提高了表面PMT的涂层密度、导电性和色泽。通过摩擦试验和洗涤剂洗涤,并通过表面电阻率测量来检测PMT/羊毛复合材料的涂层稳定性。分别用衰减全反射傅里叶变换红外光谱(ATR-FTIR)、接触角和光学显微镜技术测定羊毛织物的结构和表面性能变化。还在30 MHz - 3 GHz范围内的电磁屏蔽效能(EMSE)测量中对PMT/羊毛复合材料的性能进行了检测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7829/7671207/4d29465b71e0/turkjchem-44-775-fig001.jpg

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