Electropolymerization of 5-Indolylboronic Acid: Morphological, Spectroscopic, and Electrochemical Characterization with Perspective Toward Functional Applications.

IF 4.9 3区 工程技术 Q1 POLYMER SCIENCE
Polymers Pub Date : 2025-10-08 DOI:10.3390/polym17192702
Danilo Ramos, María Jesús Aguirre, Francisco Armijo
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引用次数: 0

Abstract

Poly(5-indolylboronic acid) was synthesized electrochemically via cyclic voltammetry using various electrodes, including screen-printed carbon electrodes, glassy carbon electrodes, highly oriented pyrolytic graphite, and 304 stainless steel. This study provides a thorough analysis of the resulting conducting polymer's electrochemical behavior, morphological and structural characteristics, and potential applications. The following techniques were employed: cyclic voltammetry, electrochemical impedance spectroscopy, Fourier-transform infrared spectroscopy, Raman spectroscopy, and field-emission scanning electron microscopy. The polymer exhibits pH-dependent redox activity within the pH range of 4-10, displaying Nernstian behavior and achieving a specific areal capacitance of 0.234 mF∙cm-2 on an SPCE electrode. This result highlights the electrode's efficiency in terms of charge storage. Impedance data indicate that the modified electrodes demonstrate a substantial decrease in charge transfer resistance and improved interfacial conductivity compared to bare electrodes. Contact angle measurements show that the presence of boronic acid groups makes the polymer hydrophilic. However, when 5PIBA was incubated in the presence of molecules containing hydroxyl groups or certain proteins, such as casein, no adsorption was observed. This suggests limited interaction with functional groups such as amino, hydroxide, and carboxyl groups present in these molecules, indicating the potential application of the polymer in biocorrosion. 5PIBA forms homogeneous, stable, and electroactive coatings on various substrates, making it a promising and versatile material for electrochemical technologies, and paving the way for future functionalization strategies.

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5-吲哚硼酸的电聚合:形态、光谱和电化学表征及其功能应用前景。
采用不同的电极,包括丝网印刷碳电极、玻碳电极、高取向热解石墨电极和304不锈钢电极,通过循环伏安法制备了聚5-吲哚基硼酸。本研究对所得导电聚合物的电化学行为、形态和结构特征以及潜在的应用前景进行了深入的分析。采用了循环伏安法、电化学阻抗法、傅里叶变换红外光谱法、拉曼光谱法和场发射扫描电镜等技术。该聚合物在4-10的pH范围内表现出pH依赖的氧化还原活性,表现出能斯特行为,并在SPCE电极上实现了0.234 mF∙cm-2的比面积电容。这一结果突出了电极在电荷存储方面的效率。阻抗数据表明,与裸电极相比,修饰电极的电荷转移电阻显著降低,界面电导率提高。接触角测量表明,硼酸基团的存在使聚合物具有亲水性。然而,当5PIBA在含有羟基的分子或某些蛋白质(如酪蛋白)存在下孵育时,没有观察到吸附。这表明与这些分子中存在的氨基、氢氧化物和羧基等官能团的相互作用有限,表明该聚合物在生物腐蚀中的潜在应用。5PIBA在各种基底上形成均匀、稳定和电活性的涂层,使其成为电化学技术中有前途的多功能材料,并为未来的功能化策略铺平了道路。
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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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