Padua Lee Marvin G, Yeh Jui-Ming, Santiago Karen S
Department of Math and Physics, College of Science, University of Santo Tomas, Manila 1008, Philippines.
Department of Chemistry; Research and Development Center for membrane Technology; Center for Nanotechnology, Chung Yuan Christian University, Zhongli, Taoyuan 32023, Taiwan.
Polymers (Basel). 2019 Nov 21;11(12):1918. doi: 10.3390/polym11121918.
This research paper presents a new application of electroactive polyimide doped with gold nanoparticles (PI/AuNPs) as a chemiresistor sensor for detecting hydrogen sulfide gas. The synthesis of PI/AuNPs was done in a simple 3-step process of polymerization using the as prepared amine-capped aniline trimer (ACAT), followed by imidization, and doping. Spectral analyses via FTIR, LC-MS and H-NMR confirmed the formation of amine-capped aniline trimer with a MW of 288 g mol. Comparison of ACAT, BSAA, and PI FTIR spectra showed successful polymerization of the last, while XRD validated the incorporation of metal nanoparticles onto the polymer matrix, showing characteristic diffraction peaks corresponding to gold. Furthermore, TEM, and FE-SEM revealed the presence of well-dispersed Au nanoparticles with an average diameter of about 60 nm. The electroactive PI/AuNPs-based sensor showed a sensitivity of 0.29% ppm HS at a linear concentration range of 50 to 300 ppm HS (r = 0.9777). The theoretical limit of detection was found at 0.142 ppm or 142 ppb HS gas. The sensor provided a stable response reading at an average response time of 43 ± 5 s, which was easily recovered after an average time of 99 ± 5 s. The sensor response was highly repeatable and reversible, with RSD values of 8.88%, and 8.60%, respectively. Compared with the performance of the conventional conducting polyaniline also doped with gold nanoparticles (PANI/AuNPs), the fabricated electroactive PI/AuNPs exhibited improved sensing performance making it a potential candidate in monitoring HS in the environment and for work-related safety.
本研究论文介绍了一种掺杂金纳米粒子的电活性聚酰亚胺(PI/AuNPs)作为用于检测硫化氢气体的化学电阻传感器的新应用。PI/AuNPs的合成采用简单的三步聚合过程,使用制备好的胺封端苯胺三聚体(ACAT),随后进行酰亚胺化和掺杂。通过傅里叶变换红外光谱(FTIR)、液相色谱 - 质谱联用(LC - MS)和氢核磁共振(H - NMR)进行的光谱分析证实了分子量为288 g/mol的胺封端苯胺三聚体的形成。ACAT、双磺酸烷基铵(BSAA)和PI的FTIR光谱比较表明最后一步成功聚合,而X射线衍射(XRD)验证了金属纳米粒子掺入聚合物基体,显示出对应于金的特征衍射峰。此外,透射电子显微镜(TEM)和场发射扫描电子显微镜(FE - SEM)显示存在平均直径约为60 nm的分散良好的金纳米粒子。基于电活性PI/AuNPs的传感器在50至300 ppm HS的线性浓度范围内对HS的灵敏度为0.29% ppm(r = 0.9777)。检测限理论值为0.142 ppm或142 ppb HS气体。该传感器在平均响应时间为43±5 s时提供稳定的响应读数,在平均99±5 s的时间后易于恢复。传感器响应具有高度可重复性和可逆性,相对标准偏差(RSD)值分别为8.88%和8.60%。与同样掺杂金纳米粒子的传统导电聚苯胺(PANI/AuNPs)的性能相比,制备的电活性PI/AuNPs表现出改进的传感性能,使其成为环境中监测HS以及工作场所安全方面的潜在候选材料。