Department of Petroleum Engineering, Shengli College, China Petroleum University, Shandong Dongying 257061, China.
Department of Petroleum Engineering, Shengli College, China Petroleum University, Shandong Dongying 257061, China.
Spectrochim Acta A Mol Biomol Spectrosc. 2021 Jun 5;254:119608. doi: 10.1016/j.saa.2021.119608. Epub 2021 Feb 22.
In this paper, a rhodamine derivative was synthesized as a probe for Hg(II) detection. Its spectral response and sensing mechanism towards Hg(II) were discussed carefully. It was found that its absorption and emission were increased by Hg(II), via a direct bonding stoichiometry of 1:1. Its association constant was determined with absorption titration as 2.59 × 10 M, which suggested a coordination procedure between Hg(II) and this rhodamine probe. It showed good selectivity towards Hg(II) over competing metal cations, no increased emission or absorption was observed in the presence of interfering metal cations. It was then covalently grafted onto silica (SiO)-encapsulated upconversion nanoparticles (UCNPs). Upon near-infrared (NIR) excitation (980 nm), RHO accepted energy from these UCNPs through a FRET (fluorescence resonance energy transfer) procedure, quenching their upconversion emission. A sensing response towards Hg(II) was thus constructed. Good linearity and selectivity were still preserved in this composite sample. On the other hand, this work found a different phenomenon from literature cases, which was the emission absence of rhodamine emission in this composite structure. Detailed analysis suggested that rhodamine emission absence was caused by its self-quenching effect.
在本文中,合成了一种罗丹明衍生物作为 Hg(II) 检测的探针。详细讨论了其对 Hg(II) 的光谱响应和传感机制。结果发现,其吸收和发射均随 Hg(II) 的增加而增强,通过直接键合比为 1:1。通过吸收滴定法确定其缔合常数为 2.59×10 M,表明 Hg(II)与该罗丹明探针之间存在配位过程。它对 Hg(II)表现出良好的选择性,在存在竞争金属阳离子时,没有观察到发射或吸收增加。然后将其共价接枝到二氧化硅(SiO)封装的上转换纳米粒子(UCNP)上。在近红外(NIR)激发(980nm)下,RHO 通过 FRET(荧光共振能量转移)过程从这些 UCNP 中接受能量,猝灭它们的上转换发射。因此构建了对 Hg(II)的传感响应。在这种复合材料中仍保持了良好的线性和选择性。另一方面,这项工作发现了与文献案例不同的现象,即在这种复合结构中罗丹明的发射缺失。详细分析表明,罗丹明发射缺失是由于其自猝灭效应引起的。