Parra-Muñoz Nicole, López-Monsalves Valentina, Espinoza-González Rodrigo, Aravena Daniel, Pizarro Nancy, Soler Monica
Department of Chemical Engineering, Biotechnology and Materials, Faculty of Physical and Mathematical Sciences, Universidad de Chile, Santiago 8370456, Chile.
Centro de Materiales para la Transición y Sostenibilidad Energética, Comisión Chilena de Energía Nuclear, Ruta 68, km 20, Santiago 7600713, Chile.
Nanomaterials (Basel). 2024 Jun 13;14(12):1022. doi: 10.3390/nano14121022.
A new curcuminoid molecule () has been designed and synthesized, containing a central -(CH)-COOH chain at the α carbon of the keto-enol moiety in the structure. The carboxylic acid group is added to react with exposed amino groups on silica oxide nanoparticles (nSiO), forming an amide bond to attach the curcuminoid moiety to the nSiO covalently. The Kaiser test quantifies the functionalization degree, yielding 222 μmol of curcuminoid per gram of nanoparticles. The synthesized hybrid nanosystem, nSiO-NHCO-CCM, displays significant emission properties, with a maximum emission at 538 nm in dichloromethane, similar to curcuminoid (without the central chain), which emits at 565 nm in the same solvent. Solvent-induced spectral effects on the absorption and emission bands of the new hybrid nanosystem are confirmed, similar to those observed for the free curcuminoid (). The new nanosystem is evaluated in the presence of kerosene in water, showing an emission band at 525 nm as a detection response. The ability of nSiO-NHCO-CCM to change its fluorescence when interacting with kerosene in water is notable, as it overcomes the limitation caused by the insolubility of free curcuminoid in water, allowing for the exploitation of its properties when connected to the water-stable nanosystem for future detection studies.
一种新的姜黄素类分子()已被设计并合成,其结构中在酮 - 烯醇部分的α碳处含有一个中心 -(CH)-COOH链。添加羧酸基团以与二氧化硅纳米颗粒(nSiO)上暴露的氨基反应,形成酰胺键,将姜黄素类部分共价连接到nSiO上。凯氏试验定量了功能化程度,每克纳米颗粒产生222μmol姜黄素类。合成的杂化纳米系统nSiO-NHCO-CCM表现出显著的发射特性,在二氯甲烷中最大发射波长为538nm,类似于姜黄素类(没有中心链),后者在相同溶剂中发射波长为565nm的情况。证实了溶剂对新杂化纳米系统吸收和发射带的光谱效应,类似于游离姜黄素类()所观察到的效应。在水相中煤油存在的情况下对新纳米系统进行了评估,显示出在525nm处有发射带作为检测响应。nSiO-NHCO-CCM在与水相中煤油相互作用时改变其荧光的能力值得注意,因为它克服了游离姜黄素类在水中不溶性所造成的限制,使得在与水稳定的纳米系统连接时能够利用其性质用于未来的检测研究。