Hwang Jiunn-Jer, Bibi Aamna, Chen Yu-Ci, Luo Kun-Hao, Huang Hsiang-Yuan, Yeh Jui-Ming
Department of Chemical Engineeing, Army Academy, Taoyuan 32023, Taiwan.
Department of Chemistry and Center for Nanotechnology, Chung Yuan Christian University, Taoyuan 32023, Taiwan.
Polymers (Basel). 2022 Aug 25;14(17):3487. doi: 10.3390/polym14173487.
In this study, electroactive poly (amic acid) (EPAA) and corresponding polyimide (EPI) without or with a sulfonated group (i.e., S-EPAA, and S-EPI) were prepared and applied in electrochemical sensing of ascorbic acid (AA). The electroactive polymers (EAPs) containing EPAA/EPI and S-EPAA/S-EPI were synthesized by using an amine-capped aniline trimer (ACAT) and sulfonated amine-capped aniline trimer (S-ACAT) as an electroactive segment that controlled the redox capability and influenced the degree of sensitivity of the EAPs towards AA. Characterization of the as-prepared EAPs was identified by FTIR spectra. The redox capability of the EAPs was investigated by electrochemical cyclic voltammetric studies. It should be noted that the redox capability of the EAPs was found to show the following trend: S-EPAA > S-EPI > EPAA > EPI. For the electrochemical sensing studies, a sensor constructed from an S-EPAA-modified carbon paste electrode (CPE) demonstrated 2-fold, 1.27-fold, and 1.35-fold higher electro-catalytic activity towards the oxidation of AA, compared to those constructed using a bare CPE, S-EPI-, and EPI/EPAA-modified CPE, respectively. The higher redox capability of S-EPAA-modified CPE exhibited a good electrochemical response towards AA at a low oxidative potential, with good stability and selectivity. Moreover, an electrochemical sensor constructed from S-EPAA-modified CPE was found to reveal better selectivity for a tertiary mixture of AA/DA/UA, as compared to that of EPI-modified, EPAA-modified and S-EPI-modified CPE, based on a series of differential pulse voltammograms.
在本研究中,制备了不含或含有磺化基团的电活性聚(酰胺酸)(EPAA)和相应的聚酰亚胺(EPI)(即S-EPAA和S-EPI),并将其应用于抗坏血酸(AA)的电化学传感。通过使用胺封端的苯胺三聚体(ACAT)和磺化胺封端的苯胺三聚体(S-ACAT)作为电活性链段来合成含有EPAA/EPI和S-EPAA/S-EPI的电活性聚合物(EAP),该电活性链段控制氧化还原能力并影响EAP对AA的灵敏度。通过傅里叶变换红外光谱(FTIR)对所制备的EAP进行表征。通过电化学循环伏安研究来考察EAP的氧化还原能力。需要注意的是,发现EAP的氧化还原能力呈现以下趋势:S-EPAA > S-EPI > EPAA > EPI。对于电化学传感研究,与分别使用裸碳糊电极(CPE)、S-EPI修饰的CPE和EPI/EPAA修饰的CPE构建的传感器相比,由S-EPAA修饰的碳糊电极(CPE)构建的传感器对AA氧化表现出高2倍、1.27倍和1.35倍的电催化活性。S-EPAA修饰的CPE具有较高的氧化还原能力,在低氧化电位下对AA表现出良好的电化学响应,具有良好的稳定性和选择性。此外,基于一系列差分脉冲伏安图,发现由S-EPAA修饰的CPE构建的电化学传感器对AA/DA/UA的三元混合物显示出比EPI修饰的、EPAA修饰的和S-EPI修饰的CPE更好的选择性。