From Dielectric to Electro-Responsive Thermoplastics: An Approach Based on Electro-Thermal Reorientation and Charged Gas Activation.

IF 4.7 2区 化学 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY ACS Applied Polymer Materials Pub Date : 2024-12-10 eCollection Date: 2024-12-27 DOI:10.1021/acsapm.4c02610
Merve Gul, Adrian Fontana-Escartín, Marc Arnau, Jordi Sans, Sonia Lanzalaco, Elaine Armelin, Enrica Chiesa, Ida Genta, Maria M Pérez-Madrigal, Carlos Alemán
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Abstract

The transition from insulator to electro-responsive has been successfully achieved by earlier studies for some inorganic materials by applying external stimuli that modify their 3D and/or electronic structures. In the case of insulating polymers, this transition is frequently accomplished by mixing them with other electroactive materials, even though a few physical treatments that induce suitable chemical modifications have also been reported. In this work, a smart approach based on the application of an electro-thermal reorientation process followed by a charged gas activation treatment has been developed for transforming insulating 3D printed polymers into electro-responsive materials. First, the developed procedure has been exhaustively investigated for 3D printed poly(lactic acid) (PLA) and subsequently has been extended to 3D printed polypropylene (PP) and poly(ethylene terephthalate glycol) (PETG) specimens. FTIR and Raman spectroscopies, X-ray diffraction, X-ray photoelectron spectroscopy, scanning electron microscopy, and water contact angle measurements confirmed that, while the electro-thermal reorientation mainly promotes the crystallinity of the samples, the charged gas activation oxidizes the C-O bonds at the surface and consequently modifies the surface morphology and wettability. Furthermore, cyclic voltammetry assays demonstrated that treated PLA, PP, and PETG are electro-responsive, even though the electrochemical activity was much higher for oxygen-containing polymers (PLA and PETG) than for the oxygen-free one (PP). Finally, as a proof of concept, treated 3D printed PLA specimens have been used as electrochemical sensors to detect dopamine (DA), an important neurotransmitter, in a concentration interval ranging from 50 to 1000 μM. The peak associated with the oxidation from DA to dopaminoquinone and the linearity of the calibration plot, which was constructed using the anodic peak current, proved that treated PLA is not only electro-responsive but also able to electrocatalyze the oxidation of DA.

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从电介质到电响应热塑性塑料:基于电热重定向和带电气体活化的方法。
在早期的研究中,一些无机材料通过施加外部刺激来改变其3D和/或电子结构,成功地实现了从绝缘体到电响应的转变。在绝缘聚合物的情况下,这种转变通常是通过将它们与其他电活性材料混合来完成的,尽管也有一些物理处理可以诱导适当的化学修饰。在这项工作中,开发了一种基于电热重定向过程应用的智能方法,然后进行带电气体活化处理,用于将绝缘3D打印聚合物转化为电响应材料。首先,开发的程序已经对3D打印聚乳酸(PLA)进行了详尽的研究,随后已扩展到3D打印聚丙烯(PP)和聚对苯二甲酸乙二醇酯(PETG)样品。FTIR和拉曼光谱、x射线衍射、x射线光电子能谱、扫描电镜和水接触角测量证实,电热重定向主要促进了样品的结晶度,而带电气体活化则氧化了表面的C-O键,从而改变了表面形貌和润湿性。此外,循环伏安法分析表明,处理过的PLA、PP和PETG具有电响应性,尽管含氧聚合物(PLA和PETG)的电化学活性比无氧聚合物(PP)高得多。最后,作为概念验证,经过处理的3D打印PLA样品已被用作电化学传感器来检测多巴胺(DA),一种重要的神经递质,浓度范围为50至1000 μM。利用阳极峰电流构建的聚乳酸氧化成多巴胺醌相关峰和校准图的线性关系证明,处理后的聚乳酸不仅具有电响应性,而且具有电催化氧化DA的能力。
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来源期刊
CiteScore
7.20
自引率
6.00%
发文量
810
期刊介绍: ACS Applied Polymer Materials is an interdisciplinary journal publishing original research covering all aspects of engineering, chemistry, physics, and biology relevant to applications of polymers. The journal is devoted to reports of new and original experimental and theoretical research of an applied nature that integrates fundamental knowledge in the areas of materials, engineering, physics, bioscience, polymer science and chemistry into important polymer applications. The journal is specifically interested in work that addresses relationships among structure, processing, morphology, chemistry, properties, and function as well as work that provide insights into mechanisms critical to the performance of the polymer for applications.
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