Modification of Graphite/SiO2 Film Electrodes with Hybrid Organic–Inorganic Perovskites for the Detection of Vasoconstrictor Bisartan 4-Butyl-Ν,Ν-bis{[2-(2H-tetrazol-5-yl)biphenyl-4-yl]methyl}imidazolium Bromide

IF 3.1 4区 化学 Q2 CHEMISTRY, INORGANIC & NUCLEAR Inorganics Pub Date : 2023-12-18 DOI:10.3390/inorganics11120485
Georgios Papathanidis, Anna Ioannou, Alexandros Spyrou, Aggeliki Mandrapylia, Konstantinos Kelaidonis, John M. Matsoukas, Ioannis Koutselas, E. Topoglidis
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Abstract

In the present work, a hybrid organic–inorganic semiconductor (HOIS) has been used to modify the surface of a graphite paste/silica (G–SiO2) film electrode on a conducting glass substrate to fabricate a promising, sensitive voltammetric sensor for the vasoconstrictor bisartan BV6, which could possibly treat hypertension and COVID-19. The HOIS exhibits exceptional optoelectronic properties with promising applications not only in light-emitting diodes, lasers, or photovoltaics but also for the development of voltammetric sensors due to the ability of the immobilized HOIS lattice to interact with ions. This study involves the synthesis and characterization of an HOIS and its attachment on the surface of a G–SiO2 film electrode in order to develop a nanocomposite, simple, sensitive with a fast-response, low-cost voltammetric sensor for BV6. The modified HOIS electrode was characterized using X-ray diffraction, scanning electron microscopy, and optical and photoluminescence spectroscopy, and its electrochemical behavior was examined using cyclic voltammetry. Under optimal conditions, the modified G–SiO2 film electrode exhibited a higher electrocatalytic activity towards the oxidation of BV6 compared to a bare graphite paste electrode. The results showed that the peak current was proportional to BV6 concentration with a linear response range from 0 to 65 × 10−6 (coefficient of determination, 0.9767) and with a low detection limit of 1.5 × 10−6 M (S/N = 3), estimated based on the area under a voltammogram, while it was 3.5 × 10−6 for peak-based analysis. The sensor demonstrated good stability and reproducibility and was found to be appropriate for the determination of drug compounds such as BV6.
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用有机-无机混合包晶石修饰石墨/二氧化硅薄膜电极以检测血管收缩剂比沙坦 4-丁基-Ν,Ν-双{[2-(2H-四唑-5-基)联苯-4-基]甲基}咪唑鎓溴化物
在本研究中,利用有机-无机混合半导体(HOIS)对导电玻璃基底上的石墨糊/二氧化硅(G-SiO2)薄膜电极表面进行了改性,制造出了一种用于血管收缩剂比沙坦 BV6 的灵敏伏安传感器,这种传感器有可能治疗高血压和 COVID-19。HOIS 具有优异的光电特性,不仅在发光二极管、激光器或光伏领域具有应用前景,而且由于固定化 HOIS 晶格与离子相互作用的能力,还可用于开发伏安传感器。本研究涉及 HOIS 的合成和表征及其在 G-SiO2 薄膜电极表面的附着,目的是开发一种简单、灵敏、快速反应、低成本的 BV6 纳米复合伏安传感器。利用 X 射线衍射、扫描电子显微镜、光学和光致发光光谱对修饰后的 HOIS 电极进行了表征,并利用循环伏安法对其电化学行为进行了检测。在最佳条件下,与裸石墨糊电极相比,改性 G-SiO2 薄膜电极对 BV6 的氧化具有更高的电催化活性。结果表明,峰值电流与 BV6 浓度成正比,线性响应范围为 0 至 65 × 10-6(确定系数为 0.9767),根据伏安图下的面积估算,检测限低至 1.5 × 10-6 M(S/N = 3),而基于峰值分析的检测限为 3.5 × 10-6。该传感器具有良好的稳定性和可重复性,适用于测定 BV6 等药物化合物。
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来源期刊
Inorganics
Inorganics Chemistry-Inorganic Chemistry
CiteScore
2.80
自引率
10.30%
发文量
193
审稿时长
6 weeks
期刊介绍: Inorganics is an open access journal that covers all aspects of inorganic chemistry research. Topics include but are not limited to: synthesis and characterization of inorganic compounds, complexes and materials structure and bonding in inorganic molecular and solid state compounds spectroscopic, magnetic, physical and chemical properties of inorganic compounds chemical reactivity, physical properties and applications of inorganic compounds and materials mechanisms of inorganic reactions organometallic compounds inorganic cluster chemistry heterogenous and homogeneous catalytic reactions promoted by inorganic compounds thermodynamics and kinetics of significant new and known inorganic compounds supramolecular systems and coordination polymers bio-inorganic chemistry and applications of inorganic compounds in biological systems and medicine environmental and sustainable energy applications of inorganic compounds and materials MD
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