Chen Shuqin, Huang Mianli, Yin Yulan, Shi Jiale
College of Chemical Engineering and Materials Science, Quanzhou Normal University, Quanzhou, 362000, People's Republic of China.
Mikrochim Acta. 2023 Jul 27;190(8):329. doi: 10.1007/s00604-023-05874-0.
A highly stable and luminescent lead-free manganese(II) halide hybrid MnBr(TMN) (CHBrMnN) was designed and synthesized by introducing a large cationic organic spacer. The MnBr(TMN) displays high luminescence with quantum yields up to 77% and possesses turn-off fluorescence behavior (E/E=365/546 nm) for water. These properties make the MnBr(TMN) a promising candidate as an alternative indicator for the detection of water with potential applications for the fabrication of LEDs. Herein, a paper-based sensor based on MnBr(TMN) is described for the determination of water content in organic solvents. The mechanism of water sensing can be tentatively explained by fluorescence quenching originating from the destruction of water due to the Mn-Br bonds of MnBr(TMN). The MnBr(TMN)-based paper sensor exhibits an excellent discrimination ability of water content in the range 0-25.0% with a detection limit of 0.27%. Satisfactory recoveries (94.91±4.09% to 103.23±2.38%) are obtained in spiked ethanol solvent samples, which demonstrate that the MnBr(TMN)-based paper sensor is capable of detecting water content in real ethanol solvent samples.
通过引入大阳离子有机间隔基,设计并合成了一种高度稳定且发光的无铅卤化锰(II)杂化物MnBr(TMN) (CHBrMnN)。MnBr(TMN)具有高达77%的量子产率,显示出高发光性能,并且对水具有荧光猝灭行为(激发/发射波长为365/546 nm)。这些特性使MnBr(TMN)成为检测水的有前途的替代指示剂,在发光二极管制造方面具有潜在应用。在此,描述了一种基于MnBr(TMN)的纸质传感器,用于测定有机溶剂中的水分含量。水传感机制可以初步解释为源于MnBr(TMN)的Mn-Br键对水的破坏导致的荧光猝灭。基于MnBr(TMN)的纸质传感器对0-25.0%范围内的水分含量具有出色的辨别能力,检测限为0.27%。在加标乙醇溶剂样品中获得了令人满意的回收率(94.91±4.09%至103.23±2.38%),这表明基于MnBr(TMN)的纸质传感器能够检测实际乙醇溶剂样品中的水分含量。