Department of The Laboratory and Veterinary Healthy, Nigde Omer Halisdemir University, Bor Vocational School, 51700, Nıgde, Turkey.
J Fluoresc. 2020 Mar;30(2):269-273. doi: 10.1007/s10895-020-02498-y. Epub 2020 Jan 28.
FIH sensor-based fluorescence was fabricated and analyzed employing H, C-, APT-NMR, elemental analysis and ATR-FTIR spectroscopy. The fluorescence properties of the fabricated FIH sensor towards metal ions were investigated by fluorescence spectroscopy. It was determined that prepared sensor had the highest fluorescence sensitivity towards Zn ions which was 35 times more than other metal ions (Ag, Li, Ba, Mg, Cu, Ni, Cr, Pb, Ca, Fe, Fe, Co, Hg, Cd, Rb, Cs, and Al) while it was being no effect for the commonly used metal ions. From the point of this view, it can be easily said that this system can be applied as fluorescence sensor for Zn ions.
采用 H、C、APT-NMR、元素分析和 ATR-FTIR 光谱法制备并分析了基于 FIH 的荧光传感器。通过荧光光谱法研究了所制备的 FIH 传感器对金属离子的荧光性质。结果表明,该传感器对 Zn 离子具有最高的荧光灵敏度,是其他金属离子(Ag、Li、Ba、Mg、Cu、Ni、Cr、Pb、Ca、Fe、Co、Hg、Cd、Rb、Cs 和 Al)的 35 倍,而对常用的金属离子没有影响。从这一点来看,可以轻易地说,该体系可以用作 Zn 离子的荧光传感器。