An optical fiber sensor based on a B10H14 derivatives/PMMA film for measuring low concentration formaldehyde in aqueous solutions.

IF 2.7 3区 化学 Q2 CHEMISTRY, ANALYTICAL
Zhuoxing Wu, Bolin Yu, Huien Gong, Yiquan Tang, Jiaxian Chen, Yingying Jian, Danmei Wei, Hongyun Meng, Chunhua Tan
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引用次数: 0

Abstract

The concentration of formaldehyde in the environment must be precisely monitored, as it is closely linked to human health. In this paper, a decaboryl derivative formaldehyde fluorescent probe (M1) was synthesized for the first time by introducing a 5-amino-isoquinoline group into a decaborane parent. Using theoretical calculations, 1H-NMR, 11B-NMR, HR-MS, and FT-IR, the molecular structure of the probe was determined and its response mechanism to formaldehyde was examined. The fluorescence response of the probe to formaldehyde was then tested, revealing an augmented response to formaldehyde in a solution of 0-600 μM, with a detection limit of 4.18 × 10-6 M. The results show that the formaldehyde fluorescence probe has the advantages of good linearity, strong anti-interference and high sensitivity. On this basis, a fiber optic formaldehyde fluorescence sensor based on an M1/PMMA thin film was constructed in this paper. This fiber optic fluorescence sensor, with its high selectivity, low detection limit, online and remote monitoring, and other advantages, was successfully applied to the detection of formaldehyde in both food and aqueous solutions, with results that were reliable compared to those of acetone. The detection limit of formaldehyde increased to 6.9 × 10-8 M. The potential for its utilization in the chemical, biological, environmental, and other formaldehyde detection fields is quite promising.

基于 B10H14 衍生物/PMMA 薄膜的光纤传感器,用于测量水溶液中的低浓度甲醛。
环境中的甲醛浓度与人类健康密切相关,因此必须对其进行精确监测。本文通过在癸硼烷母体中引入 5-氨基异喹啉基团,首次合成了一种癸硼烷衍生物甲醛荧光探针(M1)。通过理论计算、1H-NMR、11B-NMR、HR-MS 和 FT-IR,确定了该探针的分子结构,并研究了其对甲醛的响应机制。结果表明,甲醛荧光探针具有线性好、抗干扰性强、灵敏度高等优点。在此基础上,本文构建了一种基于 M1/PMMA 薄膜的光纤甲醛荧光传感器。该光纤荧光传感器具有选择性高、检测限低、可在线和远程监测等优点,被成功应用于食品和水溶液中甲醛的检测,其检测结果与丙酮的检测结果相比可靠。其在化学、生物、环境和其他甲醛检测领域的应用前景十分广阔。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Analytical Methods
Analytical Methods CHEMISTRY, ANALYTICAL-FOOD SCIENCE & TECHNOLOGY
CiteScore
5.10
自引率
3.20%
发文量
569
审稿时长
1.8 months
期刊介绍: Early applied demonstrations of new analytical methods with clear societal impact
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