Laboratório de Sistemas Poliméricos e Supramoleculares, Instituto de Física e Química, Universidade Federal de Itajubá, Itajubá 37500-903, Brazil.
School of Biological Sciences and Engineering, Yachay Tech University, San Miguel de Urcuquí, Ibarra EC 100150, Ecuador.
Molecules. 2019 Nov 21;24(23):4243. doi: 10.3390/molecules24234243.
Compared to conventional spectroscopy or chromatography analysis, chemical sensing based on colorimetric changes offers an alternative to monitor potential metal hazards in aqueous environment through rapid and low-cost colorimetric changes which can be easily interpreted In this work poly(ethylene glycol) (PEG 2000) was modified with a carboxylic acid spiropyran (SPCOOH) derivate by Steglich esterification (PEGSP2). PEGSP2 was incorporated into a poly(-caprolactone) (PCL) polymer matrix by electrospinning technique to produce nanofibers with photochromic properties. Spectroscopic analysis, thermal gravimetric analysis (TGA), and differential scanning calorimetry (DSC) were used to characterize PEGSP2. Drop shape analysis (DSA) and scanning electronic microscopy (SEM) were used to characterize the electrospun (ES) nanofibers morphology. Several metal ions solutions relevant to environmental hazards were prepared to be spotted on the surface of ES nanofibers for photochromatic sensing. Among them, Mg, Ca, Zn, Cd, La, and Er demonstrated orange fluorescence when exposed to UV light. ES nanofibers also presented higher wettability when compared to a pure PCL polymer matrix, which is critical for sensitivity. Eighteen metals ions could be detected on the electrospun material. Additionally, among all metal ions Fe was the most sensitive one in solution, in a µmol L range.
与传统的光谱或色谱分析相比,基于比色变化的化学传感提供了一种替代方法,可以通过快速且低成本的比色变化来监测水环境中的潜在金属危害,这种变化可以很容易地进行解释。在这项工作中,通过 Steglich 酯化(PEGSP2)将聚乙二醇(PEG 2000)用羧酸螺吡喃(SPCOOH)衍生物进行了修饰。PEGSP2 通过静电纺丝技术被掺入聚己内酯(PCL)聚合物基质中,以产生具有光致变色性质的纳米纤维。使用光谱分析、热重分析(TGA)和差示扫描量热法(DSC)对 PEGSP2 进行了表征。使用滴形分析(DSA)和扫描电子显微镜(SEM)对电纺(ES)纳米纤维的形态进行了表征。为了进行光致变色传感,制备了几种与环境危害相关的金属离子溶液并将其滴在 ES 纳米纤维的表面上。其中,暴露在紫外线下时,Mg、Ca、Zn、Cd、La 和 Er 显示出橙色荧光。与纯 PCL 聚合物基质相比,ES 纳米纤维具有更高的润湿性,这对于敏感性至关重要。在电纺材料上可以检测到十八种金属离子。此外,在所有金属离子中,Fe 在溶液中的灵敏度最高,在µmol L 范围内。