Cachaneski-Lopes João P, Hawthorne Felipe, Woellner Cristiano F, Nelson Toby L, Hiorns Roger C, Graeff Carlos F O, Bégué Didier, Batagin-Neto Augusto
School of Sciences, POSMAT, São Paulo State University (UNESP), Bauru, SP 17033-360, Brazil.
CNRS/University of Pau and the Adour Region/E2S (UPPA), Institute of Analytical Sciences andPhysicochemistry for the Environment and Materials, UMR5254, 64000 Pau, France.
ACS Omega. 2025 Jul 15;10(29):31908-31920. doi: 10.1021/acsomega.5c03409. eCollection 2025 Jul 29.
Nitroaromatic compounds (NACs) are used in various industrial applications including dyes, inks, herbicides, pharmaceuticals, and explosives. Due to their toxicity and environmental persistence, reliable detection and monitoring methods are required. Hybrid organic-inorganic structures have shown potential for NAC sensing; however, their complex synthesis, high processing costs, and limited reproducibility hinder practical implementation, highlighting the need for simpler and more accessible materials. In this study, we employed density functional theory (DFT)-based calculations to evaluate the electronic, optical, and reactive properties of two melanin-based oligomeric systems, aiming to assess their potential use as NAC detectors. Our results indicate the potential of these materials to detect a series of nitroaromatic compounds such as 2,4-DNP, 2,4-DNT, 2,6-DNT, TNP, and TNT by electrical and infrared optical measurements. Born-Oppenheimer molecular dynamics (BOMD) simulations reveal the thermal stability of the adsorption process, confirming effective substrate-analyte interaction under different temperature conditions. To the best of our knowledge, this compound has not been proposed for sensing applications. Its low cost and facile synthesis make it a promising candidate for the development of environmentally friendly organic NAC sensors.
硝基芳香族化合物(NACs)被用于各种工业应用,包括染料、油墨、除草剂、药品和炸药。由于其毒性和环境持久性,需要可靠的检测和监测方法。有机-无机杂化结构已显示出对NAC传感的潜力;然而,其复杂的合成、高昂的加工成本和有限的可重复性阻碍了实际应用,这凸显了对更简单、更易获取材料的需求。在本研究中,我们采用基于密度泛函理论(DFT)的计算来评估两种基于黑色素的寡聚体系统的电子、光学和反应性质,旨在评估它们作为NAC探测器的潜在用途。我们的结果表明,这些材料有潜力通过电学和红外光学测量检测一系列硝基芳香族化合物,如2,4-二硝基苯酚(2,4-DNP)、2,4-二硝基甲苯(2,4-DNT)、2,6-二硝基甲苯(2,6-DNT)、三硝基苯酚(TNP)和三硝基甲苯(TNT)。玻恩-奥本海默分子动力学(BOMD)模拟揭示了吸附过程的热稳定性,证实了在不同温度条件下底物与分析物之间的有效相互作用。据我们所知,这种化合物尚未被提议用于传感应用。其低成本和简便的合成使其成为开发环境友好型有机NAC传感器的有前景的候选材料。