Tavallali Hossein, Deilamy-Rad Gohar, Moaddeli Ali, Asghari Khadijeh
Department of Chemistry, Payame Noor University, 19395-4697 Tehran, Islamic Republic of Iran.
Department of Chemistry, Payame Noor University, 19395-4697 Tehran, Islamic Republic of Iran.
Spectrochim Acta A Mol Biomol Spectrosc. 2017 Aug 5;183:319-331. doi: 10.1016/j.saa.2017.04.050. Epub 2017 Apr 20.
A new selective probe based on copper complex of Indigo Carmine (IC-Cu) for colorimetric, naked-eye, and fluorimetric recognition of mono hydrogen phosphate (MHP) ion in HO/DMSO (4:1v/v, 1.0mmolL HEPES buffer solution pH7.5) was developed. Detection limit of HPO determination, achieved by fluorimetric and lorimetric method, are 0.071 and 1.46μmolL, respectively. Potential, therefore is clearly available in IC-Cu complex to detect HPO in micromolar range via dual visible color change and fluorescence response. Present method shows high selectivity toward HPO over other phosphate species and other anions and was successfully utilized for analysis of PO content of a fertilizer sample. The results obtained by proposed chemosensor presented good agreement with those obtained the colorimetric reference method. INHIBIT and IMPLICATION logic gates operating at molecular level have been achieved using Cuand HPO as chemical inputs and UV-Vis absorbance signal as output.
开发了一种基于靛蓝胭脂红铜配合物(IC-Cu)的新型选择性探针,用于在HO/DMSO(4:1 v/v,1.0 mmolL HEPES缓冲溶液pH7.5)中对磷酸二氢根(MHP)离子进行比色、肉眼和荧光识别。通过荧光法和比色法测定HPO的检测限分别为0.071和1.46μmolL。因此,IC-Cu配合物显然有潜力通过双重可见颜色变化和荧光响应在微摩尔范围内检测HPO。本方法对HPO的选择性高于其他磷酸盐物种和其他阴离子,并成功用于肥料样品中PO含量的分析。所提出的化学传感器获得的结果与比色参考方法获得的结果吻合良好。使用Cu和HPO作为化学输入,紫外可见吸收信号作为输出,实现了在分子水平上运行的抑制和蕴含逻辑门。