Electroactive Poly(amic acid) Films Grafted with Pendant Aniline Tetramer for Hydrogen Sulfide Gas Sensing Applications.

IF 4.9 3区 工程技术 Q1 POLYMER SCIENCE
Polymers Pub Date : 2025-07-11 DOI:10.3390/polym17141915
Kun-Hao Luo, Yun-Ting Chen, Hsuan-Yu Wu, Zong-Kai Ni, Jui-Ming Yeh
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Abstract

Hydrogen sulfide (H2S) is a highly toxic and corrosive gas generated in numerous industrial and environmental processes; rapid, sensitive detection at low ppm levels is therefore crucial for ensuring occupational safety and protecting public health. This work explores the effect of grafting various loadings of pendant aniline tetramer pendants (PEDA) onto electroactive poly(amic acid) (EPAA) films and evaluates their performance as H2S gas sensors. Comprehensive characterization including ion trap mass spectrometry (Ion trap MS), Fourier-transform infrared spectroscopy (FTIR), cyclic voltammetry (CV), and four-probe conductivity measurements, confirmed successful PEDA incorporation and revealed enhanced electrical conductivity with increasing PEDA content. Gas sensing tests revealed that EPAA3 (3 wt% PEDA) achieved the best overall performance toward 10 ppm H2S, producing a 591% response with a rapid 108 s response time. Selectivity studies showed that the response of EPAA3 to H2S exceeded those for SO2, NO2, NH3, and CO by factors of five to twelve, underscoring its excellent discrimination against common interferents. Repeatability tests over five successive cycles gave a relative standard deviation of just 7.4% for EPAA3, and long-term stability measurements over 16 days in ambient air demonstrated that EPAA3 retained over 80%. These findings establish that PEDA-grafted PAA films combine the processability of poly(amic acid) with the sharp, reversible redox behavior of pendant aniline tetramers, delivering reproducible, selective, and stable H2S sensing. EPAA3, in particular, represents a balanced composition that maximizes sensitivity and durability, offering a promising platform for practical environmental monitoring and industrial safety applications.

苯胺四聚体接枝的电活性聚胺酸薄膜在硫化氢气体传感中的应用。
硫化氢(H2S)是一种剧毒和腐蚀性气体,在许多工业和环境过程中产生;因此,在低PPM水平下进行快速、灵敏的检测对于确保职业安全和保护公众健康至关重要。本研究探讨了将不同负载的苯胺四聚体吊坠(PEDA)接枝到电活性聚丙烯酸(EPAA)薄膜上的影响,并评估了它们作为H2S气体传感器的性能。综合表征包括离子阱质谱(ion trap MS)、傅里叶变换红外光谱(FTIR)、循环伏安法(CV)和四探针电导率测量,证实了PEDA的成功掺入,并发现随着PEDA含量的增加,电导率增强。气体传感测试表明,当H2S浓度为10 ppm时,EPAA3 (3 wt% PEDA)的总体性能最佳,响应率为591%,响应时间为108 s。选择性研究表明,EPAA3对H2S的响应比对SO2、NO2、NH3和CO的响应高5 ~ 12倍,表明EPAA3对常见干扰具有良好的识别能力。在连续5个循环的重复性测试中,EPAA3的相对标准偏差仅为7.4%,在环境空气中超过16天的长期稳定性测量表明,EPAA3的保留率超过80%。这些发现表明,peda接枝的PAA薄膜结合了聚胺酸的可加工性和悬垂苯胺四聚体的尖锐、可逆的氧化还原行为,提供了可重复、选择性和稳定的H2S传感。特别是EPAA3,代表了一种平衡的成分,最大限度地提高了灵敏度和耐用性,为实际环境监测和工业安全应用提供了一个有前途的平台。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Polymers
Polymers POLYMER SCIENCE-
CiteScore
8.00
自引率
16.00%
发文量
4697
审稿时长
1.3 months
期刊介绍: Polymers (ISSN 2073-4360) is an international, open access journal of polymer science. It publishes research papers, short communications and review papers. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. Therefore, there is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced. Polymers provides an interdisciplinary forum for publishing papers which advance the fields of (i) polymerization methods, (ii) theory, simulation, and modeling, (iii) understanding of new physical phenomena, (iv) advances in characterization techniques, and (v) harnessing of self-assembly and biological strategies for producing complex multifunctional structures.
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