School of Food Science and Engineering, South China University of Technology, Guangzhou 510641, China.
Academy of Contemporary Food Engineering, South China University of Technology, Guangzhou Higher Education Mega Centre, Guangzhou 510006, China.
ACS Appl Mater Interfaces. 2024 Feb 7;16(5):6533-6547. doi: 10.1021/acsami.3c13321. Epub 2024 Jan 23.
Total volatile basic nitrogen (TVB-N) is a vital indicator for assessing seafood freshness and edibility. Rapid on-site detection of volatile basic nitrogen (VBN) is of significant importance for food safety monitoring. In this study, highly luminescent self-assembled copper nanoclusters (Cu NCs@-MBA), synthesized using -mercaptobenzoic acid (-MBA) as the ligand, were utilized for the sensitive detection of VBNs. Under acidic conditions, Cu NCs@-MBA formed compact and well-organized nanosheets through noncovalent interactions, accompanied by intense orange fluorescence emission (651 nm). The benzene carboxylic acid part of Cu NCs@-MBA provided the driving force for supramolecular assembly and exhibited a strong affinity for amines, particularly low-molecular-weight amines such as ammonia (NH) and trimethylamine (TMA). The quantitative determination of NH and TMA showed the detection limits as low as 0.33 and 0.81 ppm, respectively. Cu NCs@-MBA also demonstrated good responsiveness to putrescine and histamine. Through density functional theory (DFT) calculations and molecular dynamics (MD) simulations, the precise atomic structure, assembly structure, luminescent properties, and reaction processes of Cu NCs@-MBA were studied, revealing the sensing mechanism of Cu NCs@-MBA for highly sensitive detection of VBNs. Based on the self-assembled Cu NCs@-MBA nanosheets, portable fluorescent labels were developed for semiquantitative, visual, and real-time monitoring of seafood freshness. Therefore, this study exemplified the high sensitivity of self-assembly induced emission (SAIE)-type Cu NCs@-MBA for VBNs sensing, offering an efficient solution for on-site monitoring of seafood freshness.
总挥发性碱性氮(TVB-N)是评估海鲜新鲜度和可食用性的重要指标。快速现场检测挥发性碱性氮(VBN)对于食品安全监测具有重要意义。在本研究中,利用 -巯基苯甲酸(-MBA)作为配体合成了具有高发光性能的自组装铜纳米簇(Cu NCs@-MBA),用于灵敏检测 VBNs。在酸性条件下,Cu NCs@-MBA 通过非共价相互作用形成紧密有序的纳米片,同时伴随着强烈的橙色荧光发射(651nm)。Cu NCs@-MBA 的苯羧酸部分提供了超分子组装的驱动力,并对胺类物质,特别是低分子量胺如氨(NH)和三甲胺(TMA)表现出很强的亲和力。对 NH 和 TMA 的定量测定显示,检测限分别低至 0.33 和 0.81ppm。Cu NCs@-MBA 对腐胺和组氨酸也表现出良好的响应性。通过密度泛函理论(DFT)计算和分子动力学(MD)模拟,研究了 Cu NCs@-MBA 的精确原子结构、组装结构、发光性质和反应过程,揭示了 Cu NCs@-MBA 对 VBNs 高灵敏度检测的传感机制。基于自组装的 Cu NCs@-MBA 纳米片,开发了便携式荧光标签,用于半定量、可视化和实时监测海鲜的新鲜度。因此,本研究例证了自组装诱导发射(SAIE)型 Cu NCs@-MBA 对 VBNs 传感的高灵敏度,为现场监测海鲜新鲜度提供了一种有效的解决方案。